ITER Physics Data Model Documentation for summary

Summary of physics quantities from a simulation or an experiment. Dynamic quantities are either taken at given time slices (indicated in the "time" vector) or time-averaged over an interval (in such case the "time_width" of the interval is indicated and the "time" vector represents the end of each time interval).

Notation of array of structure indices: itime indicates a time index; i1, i2, i3, ... indicate other indices with their depth in the IDS. This notation clarifies the path of a given node, but should not be used to compare indices of different nodes (they may have different meanings).

Lifecycle status: active since version 3.22.0

Last change occured on version: 3.42.0

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Full path name Description Data Type Coordinates
ids_properties Interface Data Structure properties. This element identifies the node above as an IDS structure
ids_properties/comment Any comment describing the content of this IDS {constant} STR_0D
ids_properties/name User-defined name for this IDS occurrence {constant}. Introduced after DD version 3.39.0 STR_0D
ids_properties/homogeneous_time This node must be filled (with 0, 1, or 2) for the IDS to be valid. If 1, the time of this IDS is homogeneous, i.e. the time values for this IDS are stored in the time node just below the root of this IDS. If 0, the time values are stored in the various time fields at lower levels in the tree. In the case only constant or static nodes are filled within the IDS, homogeneous_time must be set to 2 {constant} INT_0D
ids_properties/occurrence_type Type of data contained in this occurrence. Introduced after DD version 3.39.0. Available options (refer to the children of this identifier structure) :
Name Index Description
reconstruction 1 Equilibrium reconstruction
prediction_fixed 2 Equilibrium prediction, fixed boundary
prediction_free 3 Equilibrium prediction, free boundary
mapping 4 Used for mapping equilibrium results from one grid type / resolution to another, or for including variables not present in the first set such as the calculation of magnetic field of other derived parameters
structure
ids_properties/occurrence_type/name Short string identifier {constant} STR_0D
ids_properties/occurrence_type/index Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index. {constant} INT_0D
ids_properties/occurrence_type/description Verbose description {constant} STR_0D
ids_properties/source
Lifecycle status: obsolescent since version 3.34.0
Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...). Superseeded by the new provenance structure. {constant} STR_0D
ids_properties/provider Name of the person in charge of producing this data {constant} STR_0D
ids_properties/creation_date Date at which this data has been produced {constant} STR_0D
ids_properties/version_put Version of the access layer package used to PUT this IDS structure
ids_properties/version_put/data_dictionary Version of Data Dictionary used to PUT this IDS {constant} STR_0D
ids_properties/version_put/access_layer Version of Access Layer used to PUT this IDS {constant} STR_0D
ids_properties/version_put/access_layer_language Programming language of the Access Layer high level API used to PUT this IDS {constant} STR_0D
ids_properties/provenance
Lifecycle status: alpha since version 3.34.0
Provenance information about this IDS structure
ids_properties/provenance/node(i1) Set of IDS nodes for which the provenance is given. The provenance information applies to the whole structure below the IDS node. For documenting provenance information for the whole IDS, set the size of this array of structure to 1 and leave the child "path" node empty {constant} array of structures [max_size=20 (limited in MDS+ backend only)] 1- 1...N
ids_properties/provenance/node(i1)/path Path of the node within the IDS, following the syntax given in the link below. If empty, means the provenance information applies to the whole IDS. Click here for further documentation. {constant} STR_0D
ids_properties/provenance/node(i1)/reference(i2) List of references used to populate or calculate this node, identified as explained below. In case the node is the result of of a calculation / data processing, the reference is an input to the process described in the "code" structure at the root of the IDS. The reference can be an IDS (identified by a URI or a persitent identifier, see syntax in the link below) or non-IDS data imported directly from an non-IMAS database (identified by the command used to import the reference, or the persistent identifier of the data reference). Often data are obtained by a chain of processes, however only the last process input are recorded here. The full chain of provenance has then to be reconstructed recursively from the provenance information contained in the data references. Click here for further documentation.. Introduced after DD version 3.41.0 array of structures [max_size=10 (limited in MDS+ backend only)] 1- 1...N
ids_properties/provenance/node(i1)/reference(i2)/name Reference name {constant} STR_0D
ids_properties/provenance/node(i1)/reference(i2)/timestamp Date and time (UTC) at which the reference was created, expressed in a human readable form (ISO 8601) : the format of the string shall be : YYYY-MM-DDTHH:MM:SSZ. Example : 2020-07-24T14:19:00Z {constant} STR_0D
ids_properties/plugins
Lifecycle status: alpha since version 3.39.0
Information about the plugins used to write/read this IDS. This structure is filled automatically by the Access Layer at GET/PUT time, no need to fill it via a user program.. Introduced after DD version 3.38.1 structure
ids_properties/plugins/node(i1) Set of IDS nodes for which a plugin has been applied {constant} array of structures [max_size=20 (limited in MDS+ backend only)] 1- 1...N
ids_properties/plugins/node(i1)/path Path of the node within the IDS, following the syntax given in the link below. If empty, means the plugin applies to the whole IDS. Click here for further documentation. {constant} STR_0D
ids_properties/plugins/node(i1)/put_operation(i2) Plugins used to PUT a node (potentially, multiple plugins can be applied, if so they are listed by order of application) array of structures [max_size=10 (limited in MDS+ backend only)] 1- 1...N
ids_properties/plugins/node(i1)/put_operation(i2)/name Name of software used {constant} STR_0D
ids_properties/plugins/node(i1)/put_operation(i2)/description Short description of the software (type, purpose) {constant}. Introduced after DD version 3.38.1 STR_0D
ids_properties/plugins/node(i1)/put_operation(i2)/commit Unique commit reference of software {constant} STR_0D
ids_properties/plugins/node(i1)/put_operation(i2)/version Unique version (tag) of software {constant} STR_0D
ids_properties/plugins/node(i1)/put_operation(i2)/repository URL of software repository {constant} STR_0D
ids_properties/plugins/node(i1)/put_operation(i2)/parameters List of the code specific parameters in XML format {constant} STR_0D
ids_properties/plugins/node(i1)/readback(i2) Plugins to be used to read back a node (potentially, multiple plugins can be applied, listed in reverse order of application) array of structures [max_size=10 (limited in MDS+ backend only)] 1- 1...N
ids_properties/plugins/node(i1)/readback(i2)/name Name of software used {constant} STR_0D
ids_properties/plugins/node(i1)/readback(i2)/description Short description of the software (type, purpose) {constant}. Introduced after DD version 3.38.1 STR_0D
ids_properties/plugins/node(i1)/readback(i2)/commit Unique commit reference of software {constant} STR_0D
ids_properties/plugins/node(i1)/readback(i2)/version Unique version (tag) of software {constant} STR_0D
ids_properties/plugins/node(i1)/readback(i2)/repository URL of software repository {constant} STR_0D
ids_properties/plugins/node(i1)/readback(i2)/parameters List of the code specific parameters in XML format {constant} STR_0D
ids_properties/plugins/node(i1)/get_operation(i2) Plugins actually used to read back a node (potentially, multiple plugins can be applied, listed in reverse order of application). This information is filled by the plugin infrastructure during the GET operation. array of structures [max_size=10 (limited in MDS+ backend only)] 1- 1...N
ids_properties/plugins/node(i1)/get_operation(i2)/name Name of software used {constant} STR_0D
ids_properties/plugins/node(i1)/get_operation(i2)/description Short description of the software (type, purpose) {constant}. Introduced after DD version 3.38.1 STR_0D
ids_properties/plugins/node(i1)/get_operation(i2)/commit Unique commit reference of software {constant} STR_0D
ids_properties/plugins/node(i1)/get_operation(i2)/version Unique version (tag) of software {constant} STR_0D
ids_properties/plugins/node(i1)/get_operation(i2)/repository URL of software repository {constant} STR_0D
ids_properties/plugins/node(i1)/get_operation(i2)/parameters List of the code specific parameters in XML format {constant} STR_0D
ids_properties/plugins/infrastructure_put Plugin infrastructure used to PUT the data structure
ids_properties/plugins/infrastructure_put/name Name of software used {constant} STR_0D
ids_properties/plugins/infrastructure_put/description Short description of the software (type, purpose) {constant}. Introduced after DD version 3.38.1 STR_0D
ids_properties/plugins/infrastructure_put/commit Unique commit reference of software {constant} STR_0D
ids_properties/plugins/infrastructure_put/version Unique version (tag) of software {constant} STR_0D
ids_properties/plugins/infrastructure_put/repository URL of software repository {constant} STR_0D
ids_properties/plugins/infrastructure_get Plugin infrastructure used to GET the data structure
ids_properties/plugins/infrastructure_get/name Name of software used {constant} STR_0D
ids_properties/plugins/infrastructure_get/description Short description of the software (type, purpose) {constant}. Introduced after DD version 3.38.1 STR_0D
ids_properties/plugins/infrastructure_get/commit Unique commit reference of software {constant} STR_0D
ids_properties/plugins/infrastructure_get/version Unique version (tag) of software {constant} STR_0D
ids_properties/plugins/infrastructure_get/repository URL of software repository {constant} STR_0D
tag Tag qualifying this data entry (or a list of data entries) structure
tag/name Name of the tag {constant} STR_0D
tag/comment Any comment describing the content of the tagged list of entries {constant} STR_0D
configuration Device configuration (the content may be device-specific) structure
configuration/value Value {static} STR_0D
configuration/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
magnetic_shear_flag Magnetic field shear indicator for stellarators: 0 for shearless stellarators (W7-A, W7-AS, W7-X); 1, otherwise. See [Stroth U. et al 1996 Nucl. Fusion 36 1063] structure
magnetic_shear_flag/value Value {static} INT_0D
magnetic_shear_flag/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
stationary_phase_flag This flag is set to one if the pulse is in a stationary phase from the point of the of the energy content (if the time derivative of the energy dW/dt can be neglected when calculating tau_E as W/(P_abs-dW/dt).) structure
stationary_phase_flag/value(:) Value {dynamic} INT_1D 1- time
stationary_phase_flag/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
midplane Choice of midplane definition (use the lowest index number if more than one value is relevant) . Introduced after DD version 3.32.1. Available options (refer to the children of this identifier structure) :
Name Index Description
magnetic_axis 1 Midplane defined by the height of magnetic axis equilibrium/time_slice/global_quantities/magnetic_axis/z
dr_dz_zero_sep 2 Midplane defined by the height of the outboard point on the separatrix on which dr/dz = 0 (local maximum of the major radius of the separatrix). In case of multiple local maxima, the closest one from z=z_magnetic_axis is chosen. equilibrium/time_slice/boundary_separatrix/dr_dz_zero_point/z
z_zero 3 Midplane defined by z = 0
ggd_subset 4 Midplane location is specified by means of the GGD grid subset for the inner and outer midplanes, if the midplane choice is different from the other available options. If the GGD midplane subset corresponds to one of the other available options, select that particular option to indicate it
structure
midplane/name Short string identifier {static} STR_0D
midplane/index Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index. {static} INT_0D
midplane/description Verbose description {static} STR_0D
global_quantities Various global quantities derived from the profiles structure
global_quantities/ip Total plasma current (toroidal component). Positive sign means anti-clockwise when viewed from above. [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
global_quantities/ip/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/ip/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/current_non_inductive Total non-inductive current (toroidal component). Positive sign means anti-clockwise when viewed from above. [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
global_quantities/current_non_inductive/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/current_non_inductive/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/current_bootstrap Bootstrap current (toroidal component). Positive sign means anti-clockwise when viewed from above. [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
global_quantities/current_bootstrap/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/current_bootstrap/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/current_ohm Ohmic current (toroidal component). Positive sign means anti-clockwise when viewed from above. [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
global_quantities/current_ohm/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/current_ohm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/current_alignment Figure of merit of the alignment of the current profile sources, defined in the following reference: http://iopscience.iop.org/article/10.1088/0029-5515/43/7/318 [A] structure
global_quantities/current_alignment/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/current_alignment/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/v_loop LCFS loop voltage (positive value drives positive ohmic current that flows anti-clockwise when viewed from above) [V]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
global_quantities/v_loop/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/v_loop/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/li Internal inductance. The li_3 definition is used, i.e. li_3 = 2/R0/mu0^2/Ip^2 * int(Bp^2 dV). [-] structure
global_quantities/li/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/li/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/li_mhd Internal inductance as determined by an equilibrium reconstruction code. Use this only when the li node above is used for another estimation method and there is a need to store a second value of li (determined by an equilibrium reconstruction code). The li_3 definition is used, i.e. li_3 = 2/R0/mu0^2/Ip^2 * int(Bp^2 dV). [-] structure
global_quantities/li_mhd/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/li_mhd/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/beta_tor Toroidal beta, defined as the volume-averaged total perpendicular pressure divided by (B0^2/(2*mu0)), i.e. beta_toroidal = 2 mu0 int(p dV) / V / B0^2 [-] structure
global_quantities/beta_tor/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/beta_tor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/beta_tor_mhd Toroidal beta, using the pressure determined by an equilibrium reconstruction code [-] structure
global_quantities/beta_tor_mhd/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/beta_tor_mhd/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/beta_tor_norm Normalised toroidal beta, defined as 100 * beta_tor * a[m] * B0 [T] / ip [MA] [-] structure
global_quantities/beta_tor_norm/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/beta_tor_norm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/beta_tor_norm_mhd Normalised toroidal beta, using the pressure determined by an equilibrium reconstruction code [-] structure
global_quantities/beta_tor_norm_mhd/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/beta_tor_norm_mhd/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/beta_tor_thermal_norm Normalised toroidal beta from thermal pressure only, defined as 100 * beta_tor_thermal * a[m] * B0 [T] / ip [MA] [-] structure
global_quantities/beta_tor_thermal_norm/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/beta_tor_thermal_norm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/beta_pol Poloidal beta. Defined as betap = 4 int(p dV) / [R_0 * mu_0 * Ip^2] [-] structure
global_quantities/beta_pol/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/beta_pol/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/beta_pol_mhd Poloidal beta estimated from the pressure determined by an equilibrium reconstruction code. Defined as betap = 4 int(p dV) / [R_0 * mu_0 * Ip^2] [-] structure
global_quantities/beta_pol_mhd/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/beta_pol_mhd/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_diamagnetic Plasma diamagnetic energy content = 3/2 * integral over the plasma volume of the total perpendicular pressure [J] structure
global_quantities/energy_diamagnetic/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_diamagnetic/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/denergy_diamagnetic_dt Time derivative of the diamagnetic plasma energy content [W] structure
global_quantities/denergy_diamagnetic_dt/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/denergy_diamagnetic_dt/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_total Plasma energy content = 3/2 * integral over the plasma volume of the total kinetic pressure [J] structure
global_quantities/energy_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_mhd Plasma energy content = 3/2 * integral over the plasma volume of the total kinetic pressure (pressure determined by an equilibrium reconstruction code) [J] structure
global_quantities/energy_mhd/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_mhd/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_thermal Thermal plasma energy content = 3/2 * integral over the plasma volume of the thermal pressure [J] structure
global_quantities/energy_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_ion_total_thermal Thermal ion plasma energy content (sum over the ion species) = 3/2 * integral over the plasma volume of the thermal ion pressure [J] structure
global_quantities/energy_ion_total_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_ion_total_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_electrons_thermal Thermal electron plasma energy content = 3/2 * integral over the plasma volume of the thermal electron pressure [J] structure
global_quantities/energy_electrons_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_electrons_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/denergy_thermal_dt Time derivative of the thermal plasma energy content [W] structure
global_quantities/denergy_thermal_dt/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/denergy_thermal_dt/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_b_field_pol Poloidal magnetic plasma energy content = 1/(2.mu0) * integral over the plasma volume of b_field_pol^2 [J] structure
global_quantities/energy_b_field_pol/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_b_field_pol/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_fast_perpendicular Fast particles perpendicular energy content = 3/2 * integral over the plasma volume of the fast perpendicular pressure [J] structure
global_quantities/energy_fast_perpendicular/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_fast_perpendicular/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/energy_fast_parallel Fast particles parallel energy content = 3/2 * integral over the plasma volume of the fast parallel pressure [J] structure
global_quantities/energy_fast_parallel/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/energy_fast_parallel/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/volume Volume of the confined plasma [m^3] structure
global_quantities/volume/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/volume/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/h_mode H-mode flag: 0 when the plasma is in L-mode and 1 when in H-mode structure
global_quantities/h_mode/value(:) Value {dynamic} INT_1D 1- time
global_quantities/h_mode/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/r0 Reference major radius where the vacuum toroidal magnetic field is given (usually a fixed position such as the middle of the vessel at the equatorial midplane) [m] structure
global_quantities/r0/value Value {constant} [as_parent] FLT_0D
global_quantities/r0/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/b0 Vacuum toroidal field at R0. Positive sign means anti-clockwise when viewed from above. The product R0B0 must be consistent with the b_tor_vacuum_r field of the tf IDS. [T]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
b0_like .sigma_b0_eff
structure
global_quantities/b0/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/b0/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/fusion_gain Fusion gain : ratio of the power provided by fusion reactions to the auxiliary power needed to heat the plasma. Often noted as Q in the litterature. [-] structure
global_quantities/fusion_gain/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/fusion_gain/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/h_98 Energy confinement time enhancement factor over the IPB98(y,2) scaling [-] structure
global_quantities/h_98/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/h_98/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/tau_energy Energy confinement time [s] structure
global_quantities/tau_energy/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/tau_energy/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/tau_helium Helium confinement time [s] structure
global_quantities/tau_helium/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/tau_helium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/tau_resistive Current diffusion characteristic time [s] structure
global_quantities/tau_resistive/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/tau_resistive/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/tau_energy_98 Energy confinement time estimated from the IPB98(y,2) scaling [s] structure
global_quantities/tau_energy_98/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/tau_energy_98/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/ratio_tau_helium_fuel Ratio of Helium confinement time to fuel confinement time [-] structure
global_quantities/ratio_tau_helium_fuel/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/ratio_tau_helium_fuel/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/resistance Plasma electric resistance [ohm] structure
global_quantities/resistance/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/resistance/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/q_95 q at the 95% poloidal flux surface (IMAS uses COCOS=11: only positive when toroidal current and magnetic field are in same direction) [-]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
q_like .fact_q
structure
global_quantities/q_95/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/q_95/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_ohm Ohmic power [W] structure
global_quantities/power_ohm/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_ohm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_steady Total power coupled to the plasma minus dW/dt (correcting from transient energy content) [W] structure
global_quantities/power_steady/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_steady/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_radiated Total radiated power [W] structure
global_quantities/power_radiated/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_radiated/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_radiated_inside_lcfs Radiated power from the plasma inside the Last Closed Flux Surface [W] structure
global_quantities/power_radiated_inside_lcfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_radiated_inside_lcfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_radiated_outside_lcfs Radiated power from the plasma outside the Last Closed Flux Surface [W] structure
global_quantities/power_radiated_outside_lcfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_radiated_outside_lcfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_line Radiated power from line radiation [W] structure
global_quantities/power_line/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_line/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_bremsstrahlung Radiated power from Bremsstrahlung [W] structure
global_quantities/power_bremsstrahlung/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_bremsstrahlung/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_synchrotron Radiated power from synchrotron radiation [W] structure
global_quantities/power_synchrotron/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_synchrotron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/power_loss Power through separatrix [W] structure
global_quantities/power_loss/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/power_loss/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/greenwald_fraction Greenwald fraction =line_average/n_e/value divided by (global_quantities/ip/value *1e6 * pi * minor_radius^2) [-] structure
global_quantities/greenwald_fraction/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/greenwald_fraction/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/fusion_fluence Fusion fluence : power provided by fusion reactions, integrated over time since the beginning of the pulse [J] structure
global_quantities/fusion_fluence/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/fusion_fluence/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
global_quantities/psi_external_average Average (over the plasma poloidal cross section) plasma poloidal magnetic flux produced by all toroidal loops (active coils and passive loops) but the plasma, given by the following formula : int(psi_loops.j_tor.dS) / Ip [Wb]. Introduced after DD version 3.36.0 structure
global_quantities/psi_external_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
global_quantities/psi_external_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local Plasma parameter values at different locations structure
local/magnetic_axis Parameters at magnetic axis structure
local/magnetic_axis/position Radial position at which physics quantities are evaluated structure
local/magnetic_axis/position/rho_tor_norm(:) Normalised toroidal flux coordinate. The normalizing value for rho_tor_norm, is the toroidal flux coordinate at the equilibrium boundary (LCFS or 99.x % of the LCFS in case of a fixed boundary equilibium calculation, see time_slice/boundary/b_flux_pol_norm in the equilibrium IDS) {dynamic} [-] FLT_1D 1- time
local/magnetic_axis/position/rho_tor(:) Toroidal flux coordinate. rho_tor = sqrt(b_flux_tor/(pi*b0)) ~ sqrt(pi*r^2*b0/(pi*b0)) ~ r [m]. The toroidal field used in its definition is indicated under global_quantities/b0 {dynamic} [m] FLT_1D 1- time
local/magnetic_axis/position/psi(:) Poloidal magnetic flux {dynamic} [Wb] FLT_1D 1- time
local/magnetic_axis/position/r(:) Major radius {dynamic} [m] FLT_1D 1- time
local/magnetic_axis/position/z(:) Height {dynamic} [m] FLT_1D 1- time
local/magnetic_axis/t_e Electron temperature [eV] structure
local/magnetic_axis/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/t_i_average Ion temperature (average over ion species) [eV] structure
local/magnetic_axis/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_e Electron density [m^-3] structure
local/magnetic_axis/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i Ion density per species [m^-3] structure
local/magnetic_axis/n_i/hydrogen Hydrogen (H) structure
local/magnetic_axis/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/deuterium Deuterium (D) structure
local/magnetic_axis/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/tritium Tritium (T) structure
local/magnetic_axis/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
local/magnetic_axis/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
local/magnetic_axis/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/beryllium Beryllium (Be) structure
local/magnetic_axis/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/lithium Lithium (Li) structure
local/magnetic_axis/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/carbon Carbon (C) structure
local/magnetic_axis/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/nitrogen Nitrogen (N) structure
local/magnetic_axis/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/neon Neon (Ne) structure
local/magnetic_axis/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/argon Argon (Ar) structure
local/magnetic_axis/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/xenon Xenon (Xe) structure
local/magnetic_axis/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/oxygen Oxygen (O) structure
local/magnetic_axis/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/tungsten Tungsten (W) structure
local/magnetic_axis/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/iron Iron (Fe) structure
local/magnetic_axis/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i/krypton Krypton (Kr) structure
local/magnetic_axis/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/n_i_total Total ion density (sum over species) [m^-3] structure
local/magnetic_axis/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/zeff Effective charge [-] structure
local/magnetic_axis/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/momentum_tor
Lifecycle status: obsolescent since version 3.42.0
Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/momentum_tor/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/momentum_tor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor
Lifecycle status: obsolescent since version 3.42.0
Ion toroidal rotation velocity, per species [m.s^-1] structure
local/magnetic_axis/velocity_tor/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_tor/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_tor/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_tor/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/momentum_phi Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/momentum_phi/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/momentum_phi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi Ion toroidal rotation velocity, per species [m.s^-1] structure
local/magnetic_axis/velocity_phi/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/velocity_phi/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/magnetic_axis/velocity_phi/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/magnetic_axis/velocity_phi/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/q Safety factor (IMAS uses COCOS=11: only positive when toroidal current and magnetic field are in same direction) [-]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
q_like .fact_q
structure
local/magnetic_axis/q/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/q/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/magnetic_shear Magnetic shear, defined as rho_tor/q . dq/drho_tor [-] structure
local/magnetic_axis/magnetic_shear/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/magnetic_shear/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/b_field Magnetic field [T]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
b0_like .sigma_b0_eff
structure
local/magnetic_axis/b_field/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/b_field/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/magnetic_axis/e_field_parallel Average on the magnetic surface of (e_field.b_field) / B0, where B0 is global_quantities/b0/value [V.m^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
local/magnetic_axis/e_field_parallel/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/magnetic_axis/e_field_parallel/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix Parameters at separatrix (intersection of the separatrix and the outboard midplane) structure
local/separatrix/position Radial position at which physics quantities are evaluated structure
local/separatrix/position/rho_tor_norm(:) Normalised toroidal flux coordinate. The normalizing value for rho_tor_norm, is the toroidal flux coordinate at the equilibrium boundary (LCFS or 99.x % of the LCFS in case of a fixed boundary equilibium calculation, see time_slice/boundary/b_flux_pol_norm in the equilibrium IDS) {dynamic} [-] FLT_1D 1- time
local/separatrix/position/rho_tor(:) Toroidal flux coordinate. rho_tor = sqrt(b_flux_tor/(pi*b0)) ~ sqrt(pi*r^2*b0/(pi*b0)) ~ r [m]. The toroidal field used in its definition is indicated under global_quantities/b0 {dynamic} [m] FLT_1D 1- time
local/separatrix/position/psi(:) Poloidal magnetic flux {dynamic} [Wb]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
psi_like .fact_psi
FLT_1D 1- time
local/separatrix/t_e Electron temperature [eV] structure
local/separatrix/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/t_i_average Ion temperature (average over ion species) [eV] structure
local/separatrix/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_e Electron density [m^-3] structure
local/separatrix/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i Ion density per species [m^-3] structure
local/separatrix/n_i/hydrogen Hydrogen (H) structure
local/separatrix/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/deuterium Deuterium (D) structure
local/separatrix/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/tritium Tritium (T) structure
local/separatrix/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
local/separatrix/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
local/separatrix/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/beryllium Beryllium (Be) structure
local/separatrix/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/lithium Lithium (Li) structure
local/separatrix/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/carbon Carbon (C) structure
local/separatrix/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/nitrogen Nitrogen (N) structure
local/separatrix/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/neon Neon (Ne) structure
local/separatrix/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/argon Argon (Ar) structure
local/separatrix/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/xenon Xenon (Xe) structure
local/separatrix/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/oxygen Oxygen (O) structure
local/separatrix/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/tungsten Tungsten (W) structure
local/separatrix/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/iron Iron (Fe) structure
local/separatrix/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i/krypton Krypton (Kr) structure
local/separatrix/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/n_i_total Total ion density (sum over species) [m^-3] structure
local/separatrix/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/zeff Effective charge [-] structure
local/separatrix/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/momentum_tor
Lifecycle status: obsolescent since version 3.42.0
Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/momentum_tor/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/momentum_tor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor
Lifecycle status: obsolescent since version 3.42.0
Ion toroidal rotation velocity, per species [m.s^-1] structure
local/separatrix/velocity_tor/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_tor/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_tor/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_tor/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/momentum_phi Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/momentum_phi/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/momentum_phi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi Ion toroidal rotation velocity, per species [m.s^-1] structure
local/separatrix/velocity_phi/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/velocity_phi/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix/velocity_phi/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix/velocity_phi/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/q Safety factor [-]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
q_like .fact_q
structure
local/separatrix/q/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/q/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/magnetic_shear Magnetic shear, defined as rho_tor/q . dq/drho_tor [-] structure
local/separatrix/magnetic_shear/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/magnetic_shear/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix/e_field_parallel Average on the magnetic surface of (e_field.b_field) / B0, where B0 is global_quantities/b0/value [V.m^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
local/separatrix/e_field_parallel/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix/e_field_parallel/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average Flux surface averaged parameters at separatrix (flux-surface average over the entire core-SOL boundary separatrix). Introduced after DD version 3.36.0 structure
local/separatrix_average/position Radial position at which physics quantities are evaluated structure
local/separatrix_average/position/rho_tor_norm(:) Normalised toroidal flux coordinate. The normalizing value for rho_tor_norm, is the toroidal flux coordinate at the equilibrium boundary (LCFS or 99.x % of the LCFS in case of a fixed boundary equilibium calculation, see time_slice/boundary/b_flux_pol_norm in the equilibrium IDS) {dynamic} [-] FLT_1D 1- time
local/separatrix_average/position/rho_tor(:) Toroidal flux coordinate. rho_tor = sqrt(b_flux_tor/(pi*b0)) ~ sqrt(pi*r^2*b0/(pi*b0)) ~ r [m]. The toroidal field used in its definition is indicated under global_quantities/b0 {dynamic} [m] FLT_1D 1- time
local/separatrix_average/position/psi(:) Poloidal magnetic flux {dynamic} [Wb]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
psi_like .fact_psi
FLT_1D 1- time
local/separatrix_average/t_e Electron temperature [eV] structure
local/separatrix_average/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/t_i_average Ion temperature (average over ion species) [eV] structure
local/separatrix_average/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_e Electron density [m^-3] structure
local/separatrix_average/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i Ion density per species [m^-3] structure
local/separatrix_average/n_i/hydrogen Hydrogen (H) structure
local/separatrix_average/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/deuterium Deuterium (D) structure
local/separatrix_average/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/tritium Tritium (T) structure
local/separatrix_average/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
local/separatrix_average/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
local/separatrix_average/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/beryllium Beryllium (Be) structure
local/separatrix_average/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/lithium Lithium (Li) structure
local/separatrix_average/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/carbon Carbon (C) structure
local/separatrix_average/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/nitrogen Nitrogen (N) structure
local/separatrix_average/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/neon Neon (Ne) structure
local/separatrix_average/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/argon Argon (Ar) structure
local/separatrix_average/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/xenon Xenon (Xe) structure
local/separatrix_average/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/oxygen Oxygen (O) structure
local/separatrix_average/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/tungsten Tungsten (W) structure
local/separatrix_average/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/iron Iron (Fe) structure
local/separatrix_average/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i/krypton Krypton (Kr) structure
local/separatrix_average/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/n_i_total Total ion density (sum over species) [m^-3] structure
local/separatrix_average/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/zeff Effective charge [-] structure
local/separatrix_average/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/momentum_tor
Lifecycle status: obsolescent since version 3.42.0
Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/momentum_tor/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/momentum_tor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor
Lifecycle status: obsolescent since version 3.42.0
Ion toroidal rotation velocity, per species [m.s^-1] structure
local/separatrix_average/velocity_tor/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_tor/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_tor/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_tor/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/momentum_phi Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/momentum_phi/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/momentum_phi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi Ion toroidal rotation velocity, per species [m.s^-1] structure
local/separatrix_average/velocity_phi/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/velocity_phi/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/separatrix_average/velocity_phi/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/separatrix_average/velocity_phi/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/q Safety factor [-]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
q_like .fact_q
structure
local/separatrix_average/q/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/q/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/magnetic_shear Magnetic shear, defined as rho_tor/q . dq/drho_tor [-] structure
local/separatrix_average/magnetic_shear/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/magnetic_shear/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/separatrix_average/e_field_parallel Average on the magnetic surface of (e_field.b_field) / B0, where B0 is global_quantities/b0/value [V.m^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
local/separatrix_average/e_field_parallel/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/separatrix_average/e_field_parallel/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal Parameters at pedestal top structure
local/pedestal/position Radial position at which physics quantities are evaluated structure
local/pedestal/position/rho_tor_norm(:) Normalised toroidal flux coordinate. The normalizing value for rho_tor_norm, is the toroidal flux coordinate at the equilibrium boundary (LCFS or 99.x % of the LCFS in case of a fixed boundary equilibium calculation, see time_slice/boundary/b_flux_pol_norm in the equilibrium IDS) {dynamic} [-] FLT_1D 1- time
local/pedestal/position/rho_tor(:) Toroidal flux coordinate. rho_tor = sqrt(b_flux_tor/(pi*b0)) ~ sqrt(pi*r^2*b0/(pi*b0)) ~ r [m]. The toroidal field used in its definition is indicated under global_quantities/b0 {dynamic} [m] FLT_1D 1- time
local/pedestal/position/psi(:) Poloidal magnetic flux {dynamic} [Wb]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
psi_like .fact_psi
FLT_1D 1- time
local/pedestal/t_e Electron temperature [eV] structure
local/pedestal/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/t_i_average Ion temperature (average over ion species) [eV] structure
local/pedestal/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_e Electron density [m^-3] structure
local/pedestal/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i Ion density per species [m^-3] structure
local/pedestal/n_i/hydrogen Hydrogen (H) structure
local/pedestal/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/deuterium Deuterium (D) structure
local/pedestal/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/tritium Tritium (T) structure
local/pedestal/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
local/pedestal/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
local/pedestal/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/beryllium Beryllium (Be) structure
local/pedestal/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/lithium Lithium (Li) structure
local/pedestal/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/carbon Carbon (C) structure
local/pedestal/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/nitrogen Nitrogen (N) structure
local/pedestal/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/neon Neon (Ne) structure
local/pedestal/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/argon Argon (Ar) structure
local/pedestal/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/xenon Xenon (Xe) structure
local/pedestal/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/oxygen Oxygen (O) structure
local/pedestal/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/tungsten Tungsten (W) structure
local/pedestal/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/iron Iron (Fe) structure
local/pedestal/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i/krypton Krypton (Kr) structure
local/pedestal/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/n_i_total Total ion density (sum over species) [m^-3] structure
local/pedestal/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/zeff Effective charge [-] structure
local/pedestal/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/momentum_tor
Lifecycle status: obsolescent since version 3.42.0
Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/momentum_tor/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/momentum_tor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor
Lifecycle status: obsolescent since version 3.42.0
Ion toroidal rotation velocity, per species [m.s^-1] structure
local/pedestal/velocity_tor/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_tor/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_tor/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_tor/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/momentum_phi Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/momentum_phi/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/momentum_phi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi Ion toroidal rotation velocity, per species [m.s^-1] structure
local/pedestal/velocity_phi/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/velocity_phi/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/pedestal/velocity_phi/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/pedestal/velocity_phi/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/q Safety factor [-]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
q_like .fact_q
structure
local/pedestal/q/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/q/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/magnetic_shear Magnetic shear, defined as rho_tor/q . dq/drho_tor [-] structure
local/pedestal/magnetic_shear/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/magnetic_shear/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/pedestal/e_field_parallel Average on the magnetic surface of (e_field.b_field) / B0, where B0 is global_quantities/b0/value [V.m^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
local/pedestal/e_field_parallel/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/pedestal/e_field_parallel/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb Parameters at internal transport barrier structure
local/itb/position Radial position at which physics quantities are evaluated structure
local/itb/position/rho_tor_norm(:) Normalised toroidal flux coordinate. The normalizing value for rho_tor_norm, is the toroidal flux coordinate at the equilibrium boundary (LCFS or 99.x % of the LCFS in case of a fixed boundary equilibium calculation, see time_slice/boundary/b_flux_pol_norm in the equilibrium IDS) {dynamic} [-] FLT_1D 1- time
local/itb/position/rho_tor(:) Toroidal flux coordinate. rho_tor = sqrt(b_flux_tor/(pi*b0)) ~ sqrt(pi*r^2*b0/(pi*b0)) ~ r [m]. The toroidal field used in its definition is indicated under global_quantities/b0 {dynamic} [m] FLT_1D 1- time
local/itb/position/psi(:) Poloidal magnetic flux {dynamic} [Wb]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
psi_like .fact_psi
FLT_1D 1- time
local/itb/t_e Electron temperature [eV] structure
local/itb/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/t_i_average Ion temperature (average over ion species) [eV] structure
local/itb/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_e Electron density [m^-3] structure
local/itb/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i Ion density per species [m^-3] structure
local/itb/n_i/hydrogen Hydrogen (H) structure
local/itb/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/deuterium Deuterium (D) structure
local/itb/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/tritium Tritium (T) structure
local/itb/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
local/itb/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
local/itb/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/beryllium Beryllium (Be) structure
local/itb/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/lithium Lithium (Li) structure
local/itb/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/carbon Carbon (C) structure
local/itb/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/nitrogen Nitrogen (N) structure
local/itb/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/neon Neon (Ne) structure
local/itb/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/argon Argon (Ar) structure
local/itb/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/xenon Xenon (Xe) structure
local/itb/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/oxygen Oxygen (O) structure
local/itb/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/tungsten Tungsten (W) structure
local/itb/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/iron Iron (Fe) structure
local/itb/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i/krypton Krypton (Kr) structure
local/itb/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/n_i_total Total ion density (sum over species) [m^-3] structure
local/itb/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/zeff Effective charge [-] structure
local/itb/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/momentum_tor
Lifecycle status: obsolescent since version 3.42.0
Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/momentum_tor/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/momentum_tor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor
Lifecycle status: obsolescent since version 3.42.0
Ion toroidal rotation velocity, per species [m.s^-1] structure
local/itb/velocity_tor/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_tor/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_tor/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_tor/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/momentum_phi Total plasma toroidal momentum, summed over ion species and electrons [kg.m.s^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/momentum_phi/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/momentum_phi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi Ion toroidal rotation velocity, per species [m.s^-1] structure
local/itb/velocity_phi/hydrogen Hydrogen (H). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/deuterium Deuterium (D). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/tritium Tritium (T). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/helium_3 Helium isotope with 3 nucleons (3He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/helium_4 Helium isotope with 4 nucleons (4He). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/beryllium Beryllium (Be). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/lithium Lithium (Li). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/carbon Carbon (C). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/nitrogen Nitrogen (N). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/neon Neon (Ne). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/argon Argon (Ar). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/xenon Xenon (Xe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/oxygen Oxygen (O). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/tungsten Tungsten (W). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/iron Iron (Fe). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/velocity_phi/krypton Krypton (Kr). This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
local/itb/velocity_phi/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/itb/velocity_phi/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/q Safety factor [-]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
q_like .fact_q
structure
local/itb/q/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/q/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/magnetic_shear Magnetic shear, defined as rho_tor/q . dq/drho_tor [-] structure
local/itb/magnetic_shear/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/magnetic_shear/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/itb/e_field_parallel Average on the magnetic surface of (e_field.b_field) / B0, where B0 is global_quantities/b0/value [V.m^-1]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
local/itb/e_field_parallel/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/itb/e_field_parallel/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter Parameters at the limiter tangency point structure
local/limiter/name Name of the limiter or divertor plate. Standard names are : LI (resp. LO) for lower inner (resp. outer) plates; UI (resp. UO) for upper inner (resp. outer) plates. structure
local/limiter/name/value Value {static} STR_0D
local/limiter/name/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/t_e Electron temperature [eV] structure
local/limiter/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/limiter/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/t_i_average Ion temperature (average over ion species) [eV] structure
local/limiter/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/limiter/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_e Electron density [m^-3] structure
local/limiter/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/limiter/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i Ion density per species [m^-3] structure
local/limiter/n_i/hydrogen Hydrogen (H) structure
local/limiter/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/deuterium Deuterium (D) structure
local/limiter/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/tritium Tritium (T) structure
local/limiter/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
local/limiter/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
local/limiter/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/beryllium Beryllium (Be) structure
local/limiter/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/lithium Lithium (Li) structure
local/limiter/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/carbon Carbon (C) structure
local/limiter/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/nitrogen Nitrogen (N) structure
local/limiter/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/neon Neon (Ne) structure
local/limiter/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/argon Argon (Ar) structure
local/limiter/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/xenon Xenon (Xe) structure
local/limiter/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/oxygen Oxygen (O) structure
local/limiter/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/tungsten Tungsten (W) structure
local/limiter/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/iron Iron (Fe) structure
local/limiter/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i/krypton Krypton (Kr) structure
local/limiter/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/limiter/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/n_i_total Total ion density (sum over species) [m^-3] structure
local/limiter/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/limiter/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/zeff Effective charge [-] structure
local/limiter/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/limiter/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/flux_expansion Magnetic flux expansion as defined by Stangeby : ratio between the poloidal field at the midplane separatrix and the poloidal field at the strike-point see formula attached, where u means upstream (midplane separatrix) and t means at divertor target (downstream). Click here for further documentation. [-] structure
local/limiter/flux_expansion/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/limiter/flux_expansion/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/limiter/power_flux_peak Peak power flux on the divertor target or limiter surface [W.m^-2] structure
local/limiter/power_flux_peak/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/limiter/power_flux_peak/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)
Lifecycle status: obsolescent since version 3.35.0
Parameters at a divertor plate array of structures [max_size=4 (limited in MDS+ backend only)] 1- 1...N
local/divertor_plate(i1)/name Name of the limiter or divertor plate. Standard names are : LI (resp. LO) for lower inner (resp. outer) plates; UI (resp. UO) for upper inner (resp. outer) plates. structure
local/divertor_plate(i1)/name/value Value {static} STR_0D
local/divertor_plate(i1)/name/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/t_e Electron temperature [eV] structure
local/divertor_plate(i1)/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_plate(i1)/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/t_i_average Ion temperature (average over ion species) [eV] structure
local/divertor_plate(i1)/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_plate(i1)/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_e Electron density [m^-3] structure
local/divertor_plate(i1)/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_plate(i1)/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i Ion density per species [m^-3] structure
local/divertor_plate(i1)/n_i/hydrogen Hydrogen (H) structure
local/divertor_plate(i1)/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/deuterium Deuterium (D) structure
local/divertor_plate(i1)/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/tritium Tritium (T) structure
local/divertor_plate(i1)/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
local/divertor_plate(i1)/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
local/divertor_plate(i1)/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/beryllium Beryllium (Be) structure
local/divertor_plate(i1)/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/lithium Lithium (Li) structure
local/divertor_plate(i1)/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/carbon Carbon (C) structure
local/divertor_plate(i1)/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/nitrogen Nitrogen (N) structure
local/divertor_plate(i1)/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/neon Neon (Ne) structure
local/divertor_plate(i1)/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/argon Argon (Ar) structure
local/divertor_plate(i1)/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/xenon Xenon (Xe) structure
local/divertor_plate(i1)/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/oxygen Oxygen (O) structure
local/divertor_plate(i1)/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/tungsten Tungsten (W) structure
local/divertor_plate(i1)/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/iron Iron (Fe) structure
local/divertor_plate(i1)/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i/krypton Krypton (Kr) structure
local/divertor_plate(i1)/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_plate(i1)/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/n_i_total Total ion density (sum over species) [m^-3] structure
local/divertor_plate(i1)/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_plate(i1)/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/zeff Effective charge [-] structure
local/divertor_plate(i1)/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_plate(i1)/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/flux_expansion Magnetic flux expansion as defined by Stangeby : ratio between the poloidal field at the midplane separatrix and the poloidal field at the strike-point see formula attached, where u means upstream (midplane separatrix) and t means at divertor target (downstream). Click here for further documentation. [-] structure
local/divertor_plate(i1)/flux_expansion/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_plate(i1)/flux_expansion/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_plate(i1)/power_flux_peak Peak power flux on the divertor target or limiter surface [W.m^-2] structure
local/divertor_plate(i1)/power_flux_peak/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_plate(i1)/power_flux_peak/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1) Parameters at a divertor target. Introduced after DD version 3.34.0 array of structures [max_size=4 (limited in MDS+ backend only)] 1- 1...N
local/divertor_target(i1)/name Name of the limiter or divertor plate. Standard names are : LI (resp. LO) for lower inner (resp. outer) plates; UI (resp. UO) for upper inner (resp. outer) plates. structure
local/divertor_target(i1)/name/value Value {static} STR_0D
local/divertor_target(i1)/name/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/t_e Electron temperature [eV] structure
local/divertor_target(i1)/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_target(i1)/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/t_i_average Ion temperature (average over ion species) [eV] structure
local/divertor_target(i1)/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_target(i1)/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_e Electron density [m^-3] structure
local/divertor_target(i1)/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_target(i1)/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i Ion density per species [m^-3] structure
local/divertor_target(i1)/n_i/hydrogen Hydrogen (H) structure
local/divertor_target(i1)/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/deuterium Deuterium (D) structure
local/divertor_target(i1)/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/tritium Tritium (T) structure
local/divertor_target(i1)/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
local/divertor_target(i1)/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
local/divertor_target(i1)/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/beryllium Beryllium (Be) structure
local/divertor_target(i1)/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/lithium Lithium (Li) structure
local/divertor_target(i1)/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/carbon Carbon (C) structure
local/divertor_target(i1)/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/nitrogen Nitrogen (N) structure
local/divertor_target(i1)/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/neon Neon (Ne) structure
local/divertor_target(i1)/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/argon Argon (Ar) structure
local/divertor_target(i1)/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/xenon Xenon (Xe) structure
local/divertor_target(i1)/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/oxygen Oxygen (O) structure
local/divertor_target(i1)/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/tungsten Tungsten (W) structure
local/divertor_target(i1)/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/iron Iron (Fe) structure
local/divertor_target(i1)/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i/krypton Krypton (Kr) structure
local/divertor_target(i1)/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
local/divertor_target(i1)/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/n_i_total Total ion density (sum over species) [m^-3] structure
local/divertor_target(i1)/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_target(i1)/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/zeff Effective charge [-] structure
local/divertor_target(i1)/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_target(i1)/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/flux_expansion Magnetic flux expansion as defined by Stangeby : ratio between the poloidal field at the midplane separatrix and the poloidal field at the strike-point see formula attached, where u means upstream (midplane separatrix) and t means at divertor target (downstream). Click here for further documentation. [-] structure
local/divertor_target(i1)/flux_expansion/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_target(i1)/flux_expansion/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/divertor_target(i1)/power_flux_peak Peak power flux on the divertor target or limiter surface [W.m^-2] structure
local/divertor_target(i1)/power_flux_peak/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/divertor_target(i1)/power_flux_peak/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/r_eff_norm_2_3 Parameters at r_eff_norm = 2/3, where r_eff_norm is the stellarator effective minor radius normalised to its value at the last closed flux surface structure
local/r_eff_norm_2_3/effective_helical_ripple Effective helical ripple for 1/nu neoclassical regime (see [Beidler, C. D., and W. N. G. Hitchon, 1994, Plasma Phys. Control. Fusion 35, 317]) [-] structure
local/r_eff_norm_2_3/effective_helical_ripple/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/r_eff_norm_2_3/effective_helical_ripple/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/r_eff_norm_2_3/plateau_factor Plateau factor, as defined in equation (25) of reference [Stroth U. et al 1998 Plasma Phys. Control. Fusion 40 1551] [-] structure
local/r_eff_norm_2_3/plateau_factor/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/r_eff_norm_2_3/plateau_factor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
local/r_eff_norm_2_3/iota Rotational transform (1/q) [-] structure
local/r_eff_norm_2_3/iota/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
local/r_eff_norm_2_3/iota/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary Description of the plasma boundary structure
boundary/type 0 (limiter), 1 (diverted), 11 (LSN), 12 (USN), 13 (DN), 14 (snowflake) structure
boundary/type/value(:) Value {dynamic} INT_1D 1- time
boundary/type/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/geometric_axis_r R position of the geometric axis (defined as (Rmax+Rmin) / 2 of the boundary) [m] structure
boundary/geometric_axis_r/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/geometric_axis_r/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/geometric_axis_z Z position of the geometric axis (defined as (Zmax+Zmin) / 2 of the boundary) [m] structure
boundary/geometric_axis_z/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/geometric_axis_z/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/magnetic_axis_r R position of the magnetic axis [m] structure
boundary/magnetic_axis_r/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/magnetic_axis_r/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/magnetic_axis_z Z position of the magnetic axis [m] structure
boundary/magnetic_axis_z/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/magnetic_axis_z/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/minor_radius Minor radius of the plasma boundary (defined as (Rmax-Rmin) / 2 of the boundary) [m] structure
boundary/minor_radius/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/minor_radius/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/elongation Elongation of the plasma boundary [-] structure
boundary/elongation/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/elongation/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/triangularity_upper Upper triangularity of the plasma boundary [-] structure
boundary/triangularity_upper/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/triangularity_upper/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/triangularity_lower Lower triangularity of the plasma boundary [-] structure
boundary/triangularity_lower/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/triangularity_lower/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/strike_point_inner_r R position of the inner strike point [m] structure
boundary/strike_point_inner_r/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/strike_point_inner_r/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/strike_point_inner_z Z position of the inner strike point [m] structure
boundary/strike_point_inner_z/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/strike_point_inner_z/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/strike_point_outer_r R position of the outer strike point [m] structure
boundary/strike_point_outer_r/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/strike_point_outer_r/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/strike_point_outer_z Z position of the outer strike point [m] structure
boundary/strike_point_outer_z/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/strike_point_outer_z/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/strike_point_configuration String describing the configuration of the strike points (constant, may need to become dynamic when available) structure
boundary/strike_point_configuration/value Value {constant} STR_0D
boundary/strike_point_configuration/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/gap_limiter_wall Distance between the separatrix and the nearest limiter or wall element [m] structure
boundary/gap_limiter_wall/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/gap_limiter_wall/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/distance_inner_outer_separatrices Distance between the inner and outer separatrices, in the major radius direction, at the plasma outboard and at the height corresponding to the maximum R for the inner separatrix. [m] structure
boundary/distance_inner_outer_separatrices/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
boundary/distance_inner_outer_separatrices/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
boundary/x_point_main RZ position of the main X-point structure
boundary/x_point_main/r(:) Major radius {dynamic} [m] FLT_1D 1- time
boundary/x_point_main/z(:) Height {dynamic} [m] FLT_1D 1- time
boundary/x_point_main/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits Quantities derived from specific fits of pedestal profiles, typically used in the Pedestal Database. Click here for further documentation. structure
pedestal_fits/mtanh Quantities related to "mtanh" fit structure
pedestal_fits/mtanh/n_e Electron density related quantities [m^-3] structure
pedestal_fits/mtanh/n_e/separatrix Value at separatrix structure
pedestal_fits/mtanh/n_e/separatrix/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/n_e/separatrix/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/n_e/pedestal_height Pedestal height structure
pedestal_fits/mtanh/n_e/pedestal_height/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/n_e/pedestal_height/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/n_e/pedestal_width Pedestal full width in normalised poloidal flux [-] structure
pedestal_fits/mtanh/n_e/pedestal_width/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/n_e/pedestal_width/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/n_e/pedestal_position Pedestal position in normalised poloidal flux [-] structure
pedestal_fits/mtanh/n_e/pedestal_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/n_e/pedestal_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/n_e/offset Offset of the parent quantity in the SOL structure
pedestal_fits/mtanh/n_e/offset/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/n_e/offset/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/n_e/d_dpsi_norm Core slope of the parent quantity structure
pedestal_fits/mtanh/n_e/d_dpsi_norm/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/n_e/d_dpsi_norm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/n_e/d_dpsi_norm_max Maximum gradient of the parent quantity (with respect to the normalised poloidal flux) in the pedestal structure
pedestal_fits/mtanh/n_e/d_dpsi_norm_max/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/n_e/d_dpsi_norm_max/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/n_e/d_dpsi_norm_max_position Position (in terms of normalised poloidal flux) of the maximum gradient of the parent quantity in the pedestal [-] structure
pedestal_fits/mtanh/n_e/d_dpsi_norm_max_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/n_e/d_dpsi_norm_max_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/t_e Electron temperature related quantities [eV] structure
pedestal_fits/mtanh/t_e/pedestal_height Pedestal height structure
pedestal_fits/mtanh/t_e/pedestal_height/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/t_e/pedestal_height/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/t_e/pedestal_width Pedestal full width in normalised poloidal flux [-] structure
pedestal_fits/mtanh/t_e/pedestal_width/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/t_e/pedestal_width/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/t_e/pedestal_position Pedestal position in normalised poloidal flux [-] structure
pedestal_fits/mtanh/t_e/pedestal_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/t_e/pedestal_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/t_e/offset Offset of the parent quantity in the SOL structure
pedestal_fits/mtanh/t_e/offset/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/t_e/offset/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/t_e/d_dpsi_norm Core slope of the parent quantity structure
pedestal_fits/mtanh/t_e/d_dpsi_norm/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/t_e/d_dpsi_norm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/t_e/d_dpsi_norm_max Maximum gradient of the parent quantity (with respect to the normalised poloidal flux) in the pedestal structure
pedestal_fits/mtanh/t_e/d_dpsi_norm_max/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/t_e/d_dpsi_norm_max/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/t_e/d_dpsi_norm_max_position Position (in terms of normalised poloidal flux) of the maximum gradient of the parent quantity in the pedestal [-] structure
pedestal_fits/mtanh/t_e/d_dpsi_norm_max_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/t_e/d_dpsi_norm_max_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/pressure_electron Electron pressure related quantities [Pa] structure
pedestal_fits/mtanh/pressure_electron/separatrix Value at separatrix structure
pedestal_fits/mtanh/pressure_electron/separatrix/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/pressure_electron/separatrix/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/pressure_electron/pedestal_height Pedestal height structure
pedestal_fits/mtanh/pressure_electron/pedestal_height/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/pressure_electron/pedestal_height/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/pressure_electron/pedestal_width Pedestal full width in normalised poloidal flux [-] structure
pedestal_fits/mtanh/pressure_electron/pedestal_width/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/pressure_electron/pedestal_width/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/pressure_electron/pedestal_position Pedestal position in normalised poloidal flux [-] structure
pedestal_fits/mtanh/pressure_electron/pedestal_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/pressure_electron/pedestal_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/pressure_electron/offset Offset of the parent quantity in the SOL structure
pedestal_fits/mtanh/pressure_electron/offset/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/pressure_electron/offset/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm Core slope of the parent quantity structure
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm_max Maximum gradient of the parent quantity (with respect to the normalised poloidal flux) in the pedestal structure
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm_max/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm_max/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm_max_position Position (in terms of normalised poloidal flux) of the maximum gradient of the parent quantity in the pedestal [-] structure
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm_max_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/pressure_electron/d_dpsi_norm_max_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/energy_thermal_pedestal_electron Pedestal stored thermal energy for electrons [J] structure
pedestal_fits/mtanh/energy_thermal_pedestal_electron/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/energy_thermal_pedestal_electron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/energy_thermal_pedestal_ion Pedestal stored thermal energy for ions [J] structure
pedestal_fits/mtanh/energy_thermal_pedestal_ion/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/energy_thermal_pedestal_ion/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/volume_inside_pedestal Plasma volume enclosed between the magnetic axis and the top of the pedestal [m^3] structure
pedestal_fits/mtanh/volume_inside_pedestal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/volume_inside_pedestal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/alpha_electron_pedestal_max Maximum value in the pedestal of the alpha parameter for electron pressure (see [Miller PoP 5 (1998),973,Eq. 42]) [-] structure
pedestal_fits/mtanh/alpha_electron_pedestal_max/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/alpha_electron_pedestal_max/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/alpha_electron_pedestal_max_position Position in normalised poloidal flux of the maximum value in the pedestal of the alpha parameter for electron pressure (see [Miller PoP 5 (1998),973,Eq. 42]) [-] structure
pedestal_fits/mtanh/alpha_electron_pedestal_max_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/alpha_electron_pedestal_max_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_average Poloidal beta at pressure pedestal top for electrons using the flux surface average magnetic poloidal field [-] structure
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_lfs Poloidal beta at pedestal top for electrons using the low field side magnetic poloidal field [-] structure
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_hfs Poloidal beta at pressure pedestal top for electrons using the high field side magnetic poloidal field [-] structure
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/beta_pol_pedestal_top_electron_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/nustar_pedestal_top_electron Normalised collisionality at pressure pedestal top for electrons [-] structure
pedestal_fits/mtanh/nustar_pedestal_top_electron/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/nustar_pedestal_top_electron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/rhostar_pedestal_top_electron_lfs Normalised Larmor radius at pressure pedestal top for electrons using the low field side magnetic field (important for spherical tokamaks) [-] structure
pedestal_fits/mtanh/rhostar_pedestal_top_electron_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/rhostar_pedestal_top_electron_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/rhostar_pedestal_top_electron_hfs Normalised Larmor radius at pressure pedestal top for electrons using the high field side magnetic field (important for spherical tokamaks) [-] structure
pedestal_fits/mtanh/rhostar_pedestal_top_electron_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/rhostar_pedestal_top_electron_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/rhostar_pedestal_top_electron_magnetic_axis Normalised Larmor radius at pressure pedestal top for electrons using the magnetic field on the magnetic axis (definition used in most tokamak litterature) [-] structure
pedestal_fits/mtanh/rhostar_pedestal_top_electron_magnetic_axis/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/rhostar_pedestal_top_electron_magnetic_axis/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/b_field_pol_pedestal_top_average Poloidal field calculated at the position of the pressure pedestal top (as determined by the fit) and averaged over the flux surface [T] structure
pedestal_fits/mtanh/b_field_pol_pedestal_top_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/b_field_pol_pedestal_top_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/b_field_pol_pedestal_top_hfs Poloidal field calculated at the position of the pressure pedestal top (as determined by the fit) on the high field side [T] structure
pedestal_fits/mtanh/b_field_pol_pedestal_top_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/b_field_pol_pedestal_top_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/b_field_pol_pedestal_top_lfs Poloidal field calculated at the position of the pressure pedestal top (as determined by the fit) on the low field side [T] structure
pedestal_fits/mtanh/b_field_pol_pedestal_top_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/b_field_pol_pedestal_top_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/b_field_pedestal_top_hfs Total magnetic field calculated at the position of the pressure pedestal top (as determined by the fit) on the high field side [T] structure
pedestal_fits/mtanh/b_field_pedestal_top_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/b_field_pedestal_top_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/b_field_pedestal_top_lfs Total magnetic field calculated at the position of the pressure pedestal top (as determined by the fit) on the low field side [T] structure
pedestal_fits/mtanh/b_field_pedestal_top_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/b_field_pedestal_top_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/b_field_tor_pedestal_top_hfs Toroidal field calculated at the position of the pressure pedestal top (as determined by the fit) on the high field side [T]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
b0_like .sigma_b0_eff
structure
pedestal_fits/mtanh/b_field_tor_pedestal_top_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/b_field_tor_pedestal_top_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/b_field_tor_pedestal_top_lfs Toroidal field calculated at the position of the pressure pedestal top (as determined by the fit) on the low field side [T]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
b0_like .sigma_b0_eff
structure
pedestal_fits/mtanh/b_field_tor_pedestal_top_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/b_field_tor_pedestal_top_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/coulomb_factor_pedestal_top Coulomb factor log(lambda) at the position of the pressure pedestal top (as determined by the fit) [-] structure
pedestal_fits/mtanh/coulomb_factor_pedestal_top/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/coulomb_factor_pedestal_top/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/stability MHD stability analysis of the pedestal (for this fit of the profiles) structure
pedestal_fits/mtanh/stability/alpha_experimental Experimental normalized pressure gradient reconstructed by an MHD stability code (with assumptions on the ion pressure). See definition in [Miller PoP 5 (1998),973,Eq. 42] [-] structure
pedestal_fits/mtanh/stability/alpha_experimental/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/stability/alpha_experimental/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/stability/bootstrap_current_sauter MHD calculations of the critical alpha parameter using the Sauter formula for the calculation of the bootstrap current, from Phys. Plasmas 6 (1999) 2834 structure
pedestal_fits/mtanh/stability/bootstrap_current_sauter/alpha_critical Critical normalized pressure gradient determined with self-consistent runs with an MHD stability code. Details of the method for scanning parameters in the series of runs must be described in the 'source' node [-] structure
pedestal_fits/mtanh/stability/bootstrap_current_sauter/alpha_critical/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/stability/bootstrap_current_sauter/alpha_critical/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/stability/bootstrap_current_sauter/alpha_ratio Ratio of alpha_critical over alpha_experimental [-] structure
pedestal_fits/mtanh/stability/bootstrap_current_sauter/alpha_ratio/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/stability/bootstrap_current_sauter/alpha_ratio/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/stability/bootstrap_current_sauter/t_e_pedestal_top_critical Critical electron temperature at pedestal top determined with self-consistent runs with an MHD stability code. Details of the method for scanning parameters in the series of runs must be described in the 'source' node [eV] structure
pedestal_fits/mtanh/stability/bootstrap_current_sauter/t_e_pedestal_top_critical/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/stability/bootstrap_current_sauter/t_e_pedestal_top_critical/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/stability/bootstrap_current_hager MHD calculations of the critical alpha parameter using the Hager formula for the calculation of the bootstrap current, from Phys. Plasmas 23 (2016) 042503 structure
pedestal_fits/mtanh/stability/bootstrap_current_hager/alpha_critical Critical normalized pressure gradient determined with self-consistent runs with an MHD stability code. Details of the method for scanning parameters in the series of runs must be described in the 'source' node [-] structure
pedestal_fits/mtanh/stability/bootstrap_current_hager/alpha_critical/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/stability/bootstrap_current_hager/alpha_critical/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/stability/bootstrap_current_hager/alpha_ratio Ratio of alpha_critical over alpha_experimental [-] structure
pedestal_fits/mtanh/stability/bootstrap_current_hager/alpha_ratio/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/stability/bootstrap_current_hager/alpha_ratio/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/stability/bootstrap_current_hager/t_e_pedestal_top_critical Critical electron temperature at pedestal top determined with self-consistent runs with an MHD stability code. Details of the method for scanning parameters in the series of runs must be described in the 'source' node [eV] structure
pedestal_fits/mtanh/stability/bootstrap_current_hager/t_e_pedestal_top_critical/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/mtanh/stability/bootstrap_current_hager/t_e_pedestal_top_critical/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/mtanh/parameters(:) Parameters of the fit {constant} [mixed] FLT_1D 1- 1...5
pedestal_fits/linear Quantities related to linear fit structure
pedestal_fits/linear/n_e Electron density related quantities [m^-3] structure
pedestal_fits/linear/n_e/separatrix Value at separatrix structure
pedestal_fits/linear/n_e/separatrix/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/n_e/separatrix/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/n_e/pedestal_height Pedestal height structure
pedestal_fits/linear/n_e/pedestal_height/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/n_e/pedestal_height/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/n_e/pedestal_width Pedestal full width in normalised poloidal flux [-] structure
pedestal_fits/linear/n_e/pedestal_width/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/n_e/pedestal_width/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/n_e/pedestal_position Pedestal position in normalised poloidal flux [-] structure
pedestal_fits/linear/n_e/pedestal_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/n_e/pedestal_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/n_e/offset Offset of the parent quantity in the SOL structure
pedestal_fits/linear/n_e/offset/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/n_e/offset/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/n_e/d_dpsi_norm Core slope of the parent quantity structure
pedestal_fits/linear/n_e/d_dpsi_norm/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/n_e/d_dpsi_norm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/n_e/d_dpsi_norm_max Maximum gradient of the parent quantity (with respect to the normalised poloidal flux) in the pedestal structure
pedestal_fits/linear/n_e/d_dpsi_norm_max/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/n_e/d_dpsi_norm_max/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/t_e Electron temperature related quantities [eV] structure
pedestal_fits/linear/t_e/pedestal_height Pedestal height structure
pedestal_fits/linear/t_e/pedestal_height/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/t_e/pedestal_height/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/t_e/pedestal_width Pedestal full width in normalised poloidal flux [-] structure
pedestal_fits/linear/t_e/pedestal_width/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/t_e/pedestal_width/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/t_e/pedestal_position Pedestal position in normalised poloidal flux [-] structure
pedestal_fits/linear/t_e/pedestal_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/t_e/pedestal_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/t_e/offset Offset of the parent quantity in the SOL structure
pedestal_fits/linear/t_e/offset/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/t_e/offset/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/t_e/d_dpsi_norm Core slope of the parent quantity structure
pedestal_fits/linear/t_e/d_dpsi_norm/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/t_e/d_dpsi_norm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/t_e/d_dpsi_norm_max Maximum gradient of the parent quantity (with respect to the normalised poloidal flux) in the pedestal structure
pedestal_fits/linear/t_e/d_dpsi_norm_max/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/t_e/d_dpsi_norm_max/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/pressure_electron Electron pressure related quantities [Pa] structure
pedestal_fits/linear/pressure_electron/separatrix Value at separatrix structure
pedestal_fits/linear/pressure_electron/separatrix/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/pressure_electron/separatrix/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/pressure_electron/pedestal_height Pedestal height structure
pedestal_fits/linear/pressure_electron/pedestal_height/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/pressure_electron/pedestal_height/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/pressure_electron/pedestal_width Pedestal full width in normalised poloidal flux [-] structure
pedestal_fits/linear/pressure_electron/pedestal_width/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/pressure_electron/pedestal_width/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/pressure_electron/pedestal_position Pedestal position in normalised poloidal flux [-] structure
pedestal_fits/linear/pressure_electron/pedestal_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/pressure_electron/pedestal_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/pressure_electron/offset Offset of the parent quantity in the SOL structure
pedestal_fits/linear/pressure_electron/offset/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/pressure_electron/offset/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/pressure_electron/d_dpsi_norm Core slope of the parent quantity structure
pedestal_fits/linear/pressure_electron/d_dpsi_norm/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/pressure_electron/d_dpsi_norm/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/pressure_electron/d_dpsi_norm_max Maximum gradient of the parent quantity (with respect to the normalised poloidal flux) in the pedestal structure
pedestal_fits/linear/pressure_electron/d_dpsi_norm_max/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
pedestal_fits/linear/pressure_electron/d_dpsi_norm_max/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/pressure_electron/d_dpsi_norm_max_position Position (in terms of normalised poloidal flux) of the maximum gradient of the parent quantity in the pedestal [-] structure
pedestal_fits/linear/pressure_electron/d_dpsi_norm_max_position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/pressure_electron/d_dpsi_norm_max_position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/energy_thermal_pedestal_electron Pedestal stored thermal energy for electrons [J] structure
pedestal_fits/linear/energy_thermal_pedestal_electron/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/energy_thermal_pedestal_electron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/energy_thermal_pedestal_ion Pedestal stored thermal energy for ions [J] structure
pedestal_fits/linear/energy_thermal_pedestal_ion/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/energy_thermal_pedestal_ion/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/volume_inside_pedestal Plasma volume enclosed between the magnetic axis and the top of the pedestal [m^3] structure
pedestal_fits/linear/volume_inside_pedestal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/volume_inside_pedestal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/beta_pol_pedestal_top_electron_average Poloidal beta at pressure pedestal top for electrons using the flux surface average magnetic poloidal field [-] structure
pedestal_fits/linear/beta_pol_pedestal_top_electron_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/beta_pol_pedestal_top_electron_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/beta_pol_pedestal_top_electron_lfs Poloidal beta at pressure pedestal top for electrons using the low field side magnetic poloidal field [-] structure
pedestal_fits/linear/beta_pol_pedestal_top_electron_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/beta_pol_pedestal_top_electron_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/beta_pol_pedestal_top_electron_hfs Poloidal beta at pressure pedestal top for electrons using the high field side magnetic poloidal field [-] structure
pedestal_fits/linear/beta_pol_pedestal_top_electron_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/beta_pol_pedestal_top_electron_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/nustar_pedestal_top_electron Normalised collisionality at pressure pedestal top for electrons [-] structure
pedestal_fits/linear/nustar_pedestal_top_electron/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/nustar_pedestal_top_electron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/rhostar_pedestal_top_electron_lfs Normalised Larmor radius at pressure pedestal top for electrons using the low field side magnetic field (important for spherical tokamaks) [-] structure
pedestal_fits/linear/rhostar_pedestal_top_electron_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/rhostar_pedestal_top_electron_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/rhostar_pedestal_top_electron_hfs Normalised Larmor radius at pressure pedestal top for electrons using the high field side magnetic field (important for spherical tokamaks) [-] structure
pedestal_fits/linear/rhostar_pedestal_top_electron_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/rhostar_pedestal_top_electron_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/rhostar_pedestal_top_electron_magnetic_axis Normalised Larmor radius at pressure pedestal top for electrons using the magnetic field on the magnetic axis (definition used in most tokamak literature) [-] structure
pedestal_fits/linear/rhostar_pedestal_top_electron_magnetic_axis/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/rhostar_pedestal_top_electron_magnetic_axis/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/b_field_pol_pedestal_top_average Poloidal field calculated at the position of the pressure pedestal top (as determined by the fit) and averaged over the flux surface [T] structure
pedestal_fits/linear/b_field_pol_pedestal_top_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/b_field_pol_pedestal_top_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/b_field_pol_pedestal_top_hfs Poloidal field calculated at the position of the pressure pedestal top (as determined by the fit) on the high field side [T] structure
pedestal_fits/linear/b_field_pol_pedestal_top_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/b_field_pol_pedestal_top_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/b_field_pol_pedestal_top_lfs Poloidal field calculated at the position of the pressure pedestal top (as determined by the fit) on the low field side [T] structure
pedestal_fits/linear/b_field_pol_pedestal_top_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/b_field_pol_pedestal_top_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/b_field_pedestal_top_hfs Total magnetic field calculated at the position of the pressure pedestal top (as determined by the fit) on the high field side [T] structure
pedestal_fits/linear/b_field_pedestal_top_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/b_field_pedestal_top_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/b_field_pedestal_top_lfs Total magnetic field calculated at the position of the pressure pedestal top (as determined by the fit) on the low field side [T] structure
pedestal_fits/linear/b_field_pedestal_top_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/b_field_pedestal_top_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/b_field_tor_pedestal_top_hfs Toroidal field calculated at the position of the pressure pedestal top (as determined by the fit) on the high field side [T]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
b0_like .sigma_b0_eff
structure
pedestal_fits/linear/b_field_tor_pedestal_top_hfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/b_field_tor_pedestal_top_hfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/b_field_tor_pedestal_top_lfs Toroidal field calculated at the position of the pressure pedestal top (as determined by the fit) on the low field side [T]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
b0_like .sigma_b0_eff
structure
pedestal_fits/linear/b_field_tor_pedestal_top_lfs/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/b_field_tor_pedestal_top_lfs/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/coulomb_factor_pedestal_top Coulomb factor log(lambda) at the position of the pressure pedestal top (as determined by the fit) [-] structure
pedestal_fits/linear/coulomb_factor_pedestal_top/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
pedestal_fits/linear/coulomb_factor_pedestal_top/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pedestal_fits/linear/parameters(:) Parameters of the fit {constant} [mixed] FLT_1D 1- 1...5
line_average Line average plasma parameters structure
line_average/t_e Electron temperature [eV] structure
line_average/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
line_average/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/t_i_average Ion temperature (average over ion species) [eV] structure
line_average/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
line_average/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_e Electron density [m^-3] structure
line_average/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
line_average/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/dn_e_dt Time derivative of the electron density [m^-3.s-1] structure
line_average/dn_e_dt/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
line_average/dn_e_dt/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i Ion density per species [m^-3] structure
line_average/n_i/hydrogen Hydrogen (H) structure
line_average/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/deuterium Deuterium (D) structure
line_average/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/tritium Tritium (T) structure
line_average/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
line_average/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
line_average/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/beryllium Beryllium (Be) structure
line_average/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/lithium Lithium (Li) structure
line_average/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/carbon Carbon (C) structure
line_average/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/nitrogen Nitrogen (N) structure
line_average/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/neon Neon (Ne) structure
line_average/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/argon Argon (Ar) structure
line_average/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/xenon Xenon (Xe) structure
line_average/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/oxygen Oxygen (O) structure
line_average/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/tungsten Tungsten (W) structure
line_average/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/iron Iron (Fe) structure
line_average/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i/krypton Krypton (Kr) structure
line_average/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
line_average/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/n_i_total Total ion density (sum over species) [m^-3] structure
line_average/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
line_average/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/zeff Effective charge [-] structure
line_average/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
line_average/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/meff_hydrogenic Effective mass of the hydrogenic species (MH. nH+MD.nD+MT.nT)/(nH+nD+nT) [amu] structure
line_average/meff_hydrogenic/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
line_average/meff_hydrogenic/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
line_average/isotope_fraction_hydrogen Fraction of hydrogen density among the hydrogenic species (nH/(nH+nD+nT)) [-] structure
line_average/isotope_fraction_hydrogen/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
line_average/isotope_fraction_hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average Volume average plasma parameters structure
volume_average/t_e Electron temperature [eV] structure
volume_average/t_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
volume_average/t_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/t_i_average Ion temperature (average over ion species) [eV] structure
volume_average/t_i_average/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
volume_average/t_i_average/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_e Electron density [m^-3] structure
volume_average/n_e/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
volume_average/n_e/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/dn_e_dt Time derivative of the electron density [m^-3.s-1] structure
volume_average/dn_e_dt/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
volume_average/dn_e_dt/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i Ion density per species [m^-3] structure
volume_average/n_i/hydrogen Hydrogen (H) structure
volume_average/n_i/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/deuterium Deuterium (D) structure
volume_average/n_i/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/tritium Tritium (T) structure
volume_average/n_i/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/helium_3 Helium isotope with 3 nucleons (3He) structure
volume_average/n_i/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/helium_4 Helium isotope with 4 nucleons (4He) structure
volume_average/n_i/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/beryllium Beryllium (Be) structure
volume_average/n_i/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/lithium Lithium (Li) structure
volume_average/n_i/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/carbon Carbon (C) structure
volume_average/n_i/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/nitrogen Nitrogen (N) structure
volume_average/n_i/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/neon Neon (Ne) structure
volume_average/n_i/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/argon Argon (Ar) structure
volume_average/n_i/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/xenon Xenon (Xe) structure
volume_average/n_i/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/oxygen Oxygen (O) structure
volume_average/n_i/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/tungsten Tungsten (W) structure
volume_average/n_i/tungsten/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/tungsten/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/iron Iron (Fe) structure
volume_average/n_i/iron/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/iron/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i/krypton Krypton (Kr) structure
volume_average/n_i/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
volume_average/n_i/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/n_i_total Total ion density (sum over species) [m^-3] structure
volume_average/n_i_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
volume_average/n_i_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/zeff Effective charge [-] structure
volume_average/zeff/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
volume_average/zeff/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/meff_hydrogenic Effective mass of the hydrogenic species (MH. nH+MD.nD+MT.nT)/(nH+nD+nT) [amu] structure
volume_average/meff_hydrogenic/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
volume_average/meff_hydrogenic/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
volume_average/isotope_fraction_hydrogen Fraction of hydrogen density among the hydrogenic species (nH/(nH+nD+nT)) [-] structure
volume_average/isotope_fraction_hydrogen/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
volume_average/isotope_fraction_hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption Disruption characteristics, if the pulse is terminated by a disruption structure
disruption/time Time of the disruption [s] structure
disruption/time/value Value {constant} [as_parent] FLT_0D
disruption/time/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/time_radiated_power_max Time of maximum radiated power, relative to the time of the disruption [s] structure
disruption/time_radiated_power_max/value Value {constant} [as_parent] FLT_0D
disruption/time_radiated_power_max/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/time_half_ip Time at which the plasma current has fallen to half of the initial current at the start of the disruption, relative to the time of the disruption [s] structure
disruption/time_half_ip/value Value {constant} [as_parent] FLT_0D
disruption/time_half_ip/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/vertical_displacement Direction of the plasma vertical displacement just before the disruption 1 (upwards) / 0 (no displacement)/ -1 (downwards) [s] structure
disruption/vertical_displacement/value Value {constant} INT_0D
disruption/vertical_displacement/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/mitigation_valve Flag indicating whether any disruption mitigation valve has been used (1) or none (0) structure
disruption/mitigation_valve/value Value {constant} INT_0D
disruption/mitigation_valve/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times Characteristic decay times describing the loss of different quantities during the disruption. Introduced after DD version 3.39.0 structure
disruption/decay_times/ip Total toroidal plasma current (including runaway electrons and halo currents) structure
disruption/decay_times/ip/linear_20_80 Decay time defined as (t(0.2)-t(0.8))/0.6, where t(X) corresponds to the time where this quantity reaches X*100% of its pre-disruptive value [s] structure
disruption/decay_times/ip/linear_20_80/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/ip/linear_20_80/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/ip/linear_custom Decay time defined as (t(X2)-t(X1))/(X1-X2), where t(Xj) corresponds to the time where this quantity reaches Xj*100% of its pre-disruptive value structure
disruption/decay_times/ip/linear_custom/x1 User-defined parameter, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/ip/linear_custom/x2 User-defined value, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/ip/linear_custom/decay_time Decay time [s] structure
disruption/decay_times/ip/linear_custom/decay_time/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/ip/linear_custom/decay_time/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/ip/exponential Exponential decay time (tau) used when the process is described by an exponential function (exp(-(t-t0)/tau))). Here "t" is time and "t0" is the time where the decay process starts [s] structure
disruption/decay_times/ip/exponential/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/ip/exponential/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/current_runaways Total toroidal current carried by runaway electrons structure
disruption/decay_times/current_runaways/linear_20_80 Decay time defined as (t(0.2)-t(0.8))/0.6, where t(X) corresponds to the time where this quantity reaches X*100% of its pre-disruptive value [s] structure
disruption/decay_times/current_runaways/linear_20_80/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/current_runaways/linear_20_80/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/current_runaways/linear_custom Decay time defined as (t(X2)-t(X1))/(X1-X2), where t(Xj) corresponds to the time where this quantity reaches Xj*100% of its pre-disruptive value structure
disruption/decay_times/current_runaways/linear_custom/x1 User-defined parameter, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/current_runaways/linear_custom/x2 User-defined value, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/current_runaways/linear_custom/decay_time Decay time [s] structure
disruption/decay_times/current_runaways/linear_custom/decay_time/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/current_runaways/linear_custom/decay_time/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/current_runaways/exponential Exponential decay time (tau) used when the process is described by an exponential function (exp(-(t-t0)/tau))). Here "t" is time and "t0" is the time where the decay process starts [s] structure
disruption/decay_times/current_runaways/exponential/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/current_runaways/exponential/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/t_e_volume_average Volume average electron temperature structure
disruption/decay_times/t_e_volume_average/linear_20_80 Decay time defined as (t(0.2)-t(0.8))/0.6, where t(X) corresponds to the time where this quantity reaches X*100% of its pre-disruptive value [s] structure
disruption/decay_times/t_e_volume_average/linear_20_80/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/t_e_volume_average/linear_20_80/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/t_e_volume_average/linear_custom Decay time defined as (t(X2)-t(X1))/(X1-X2), where t(Xj) corresponds to the time where this quantity reaches Xj*100% of its pre-disruptive value structure
disruption/decay_times/t_e_volume_average/linear_custom/x1 User-defined parameter, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/t_e_volume_average/linear_custom/x2 User-defined value, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/t_e_volume_average/linear_custom/decay_time Decay time [s] structure
disruption/decay_times/t_e_volume_average/linear_custom/decay_time/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/t_e_volume_average/linear_custom/decay_time/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/t_e_volume_average/exponential Exponential decay time (tau) used when the process is described by an exponential function (exp(-(t-t0)/tau))). Here "t" is time and "t0" is the time where the decay process starts [s] structure
disruption/decay_times/t_e_volume_average/exponential/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/t_e_volume_average/exponential/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/t_e_magnetic_axis Electron temperature at the magnetic axis structure
disruption/decay_times/t_e_magnetic_axis/linear_20_80 Decay time defined as (t(0.2)-t(0.8))/0.6, where t(X) corresponds to the time where this quantity reaches X*100% of its pre-disruptive value [s] structure
disruption/decay_times/t_e_magnetic_axis/linear_20_80/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/t_e_magnetic_axis/linear_20_80/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/t_e_magnetic_axis/linear_custom Decay time defined as (t(X2)-t(X1))/(X1-X2), where t(Xj) corresponds to the time where this quantity reaches Xj*100% of its pre-disruptive value structure
disruption/decay_times/t_e_magnetic_axis/linear_custom/x1 User-defined parameter, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/t_e_magnetic_axis/linear_custom/x2 User-defined value, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/t_e_magnetic_axis/linear_custom/decay_time Decay time [s] structure
disruption/decay_times/t_e_magnetic_axis/linear_custom/decay_time/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/t_e_magnetic_axis/linear_custom/decay_time/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/t_e_magnetic_axis/exponential Exponential decay time (tau) used when the process is described by an exponential function (exp(-(t-t0)/tau))). Here "t" is time and "t0" is the time where the decay process starts [s] structure
disruption/decay_times/t_e_magnetic_axis/exponential/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/t_e_magnetic_axis/exponential/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/energy_thermal Thermal plasma energy content = 3/2 * integral over the plasma volume of the thermal pressure structure
disruption/decay_times/energy_thermal/linear_20_80 Decay time defined as (t(0.2)-t(0.8))/0.6, where t(X) corresponds to the time where this quantity reaches X*100% of its pre-disruptive value [s] structure
disruption/decay_times/energy_thermal/linear_20_80/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/energy_thermal/linear_20_80/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/energy_thermal/linear_custom Decay time defined as (t(X2)-t(X1))/(X1-X2), where t(Xj) corresponds to the time where this quantity reaches Xj*100% of its pre-disruptive value structure
disruption/decay_times/energy_thermal/linear_custom/x1 User-defined parameter, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/energy_thermal/linear_custom/x2 User-defined value, see description of linear_custom {constant} [-] FLT_0D
disruption/decay_times/energy_thermal/linear_custom/decay_time Decay time [s] structure
disruption/decay_times/energy_thermal/linear_custom/decay_time/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/energy_thermal/linear_custom/decay_time/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
disruption/decay_times/energy_thermal/exponential Exponential decay time (tau) used when the process is described by an exponential function (exp(-(t-t0)/tau))). Here "t" is time and "t0" is the time where the decay process starts [s] structure
disruption/decay_times/energy_thermal/exponential/value Value {constant} [as_parent] FLT_0D
disruption/decay_times/energy_thermal/exponential/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
elms Edge Localized Modes related quantities structure
elms/frequency ELMs frequency [Hz] structure
elms/frequency/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
elms/frequency/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
elms/type ELMs type (I, II, III, ...) structure
elms/type/value(:) Value {dynamic} INT_1D 1- time
elms/type/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion Fusion reactions structure
fusion/power Power coupled to the plasma by fusion reactions [W] structure
fusion/power/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/power/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/current Parallel current driven by this fusion reactions [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
fusion/current/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/current/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes
Lifecycle status: obsolescent since version 3.34.0
Neutron fluxes from various reactions structure
fusion/neutron_fluxes/total Total neutron flux from all reactions [Hz] structure
fusion/neutron_fluxes/total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/thermal Neutron flux from all plasma thermal reactions [Hz] structure
fusion/neutron_fluxes/thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/dd Neutron fluxes from DD reactions structure
fusion/neutron_fluxes/dd/total Total neutron flux coming from this reaction [Hz] structure
fusion/neutron_fluxes/dd/total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/dd/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/dd/thermal Neutron flux coming from thermal plasma [Hz] structure
fusion/neutron_fluxes/dd/thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/dd/thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/dd/beam_thermal Neutron flux coming from NBI beam - plasma reactions [Hz] structure
fusion/neutron_fluxes/dd/beam_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/dd/beam_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/dd/beam_beam Neutron flux coming from NBI beam self reactions [Hz] structure
fusion/neutron_fluxes/dd/beam_beam/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/dd/beam_beam/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/dt Neutron fluxes from DT reactions structure
fusion/neutron_fluxes/dt/total Total neutron flux coming from this reaction [Hz] structure
fusion/neutron_fluxes/dt/total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/dt/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/dt/thermal Neutron flux coming from thermal plasma [Hz] structure
fusion/neutron_fluxes/dt/thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/dt/thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/dt/beam_thermal Neutron flux coming from NBI beam - plasma reactions [Hz] structure
fusion/neutron_fluxes/dt/beam_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/dt/beam_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/dt/beam_beam Neutron flux coming from NBI beam self reactions [Hz] structure
fusion/neutron_fluxes/dt/beam_beam/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/dt/beam_beam/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/tt Neutron fluxes from TT reactions structure
fusion/neutron_fluxes/tt/total Total neutron flux coming from this reaction [Hz] structure
fusion/neutron_fluxes/tt/total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/tt/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/tt/thermal Neutron flux coming from thermal plasma [Hz] structure
fusion/neutron_fluxes/tt/thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/tt/thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/tt/beam_thermal Neutron flux coming from NBI beam - plasma reactions [Hz] structure
fusion/neutron_fluxes/tt/beam_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/tt/beam_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_fluxes/tt/beam_beam Neutron flux coming from NBI beam self reactions [Hz] structure
fusion/neutron_fluxes/tt/beam_beam/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_fluxes/tt/beam_beam/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates Neutron rates from various reactions. Introduced after DD version 3.33.0 structure
fusion/neutron_rates/total Total neutron rate from all reactions [Hz] structure
fusion/neutron_rates/total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/thermal Neutron rate from all plasma thermal reactions [Hz] structure
fusion/neutron_rates/thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/dd Neutron rates from DD reactions structure
fusion/neutron_rates/dd/total Total neutron rate coming from this reaction [Hz] structure
fusion/neutron_rates/dd/total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/dd/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/dd/thermal Neutron rate coming from thermal plasma [Hz] structure
fusion/neutron_rates/dd/thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/dd/thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/dd/beam_thermal Neutron rate coming from NBI beam - plasma reactions [Hz] structure
fusion/neutron_rates/dd/beam_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/dd/beam_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/dd/beam_beam Neutron rate coming from NBI beam self reactions [Hz] structure
fusion/neutron_rates/dd/beam_beam/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/dd/beam_beam/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/dt Neutron rates from DT reactions structure
fusion/neutron_rates/dt/total Total neutron rate coming from this reaction [Hz] structure
fusion/neutron_rates/dt/total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/dt/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/dt/thermal Neutron rate coming from thermal plasma [Hz] structure
fusion/neutron_rates/dt/thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/dt/thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/dt/beam_thermal Neutron rate coming from NBI beam - plasma reactions [Hz] structure
fusion/neutron_rates/dt/beam_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/dt/beam_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/dt/beam_beam Neutron rate coming from NBI beam self reactions [Hz] structure
fusion/neutron_rates/dt/beam_beam/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/dt/beam_beam/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/tt Neutron rates from TT reactions structure
fusion/neutron_rates/tt/total Total neutron rate coming from this reaction [Hz] structure
fusion/neutron_rates/tt/total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/tt/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/tt/thermal Neutron rate coming from thermal plasma [Hz] structure
fusion/neutron_rates/tt/thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/tt/thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/tt/beam_thermal Neutron rate coming from NBI beam - plasma reactions [Hz] structure
fusion/neutron_rates/tt/beam_thermal/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/tt/beam_thermal/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_rates/tt/beam_beam Neutron rate coming from NBI beam self reactions [Hz] structure
fusion/neutron_rates/tt/beam_beam/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_rates/tt/beam_beam/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
fusion/neutron_power_total Total neutron power (from all reactions). Sum over each type of reaction (DD, DT, TT for thermal, beam-plasma, beam-beam, etc.) of the neutron production rate times the average neutron birth energy [W] structure
fusion/neutron_power_total/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
fusion/neutron_power_total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates Gas injection rates in equivalent electrons.s^-1 [electrons.s^-1] structure
gas_injection_rates/total Total gas injection rate (sum over species) structure
gas_injection_rates/total/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/midplane Gas injection rate from all valves located near the equatorial midplane structure
gas_injection_rates/midplane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/midplane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/top Gas injection rate from all valves located near the top of the vaccuum chamber structure
gas_injection_rates/top/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/top/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/bottom Gas injection rate from all valves located near near the bottom of the vaccuum chamber structure
gas_injection_rates/bottom/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/bottom/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/hydrogen Hydrogen structure
gas_injection_rates/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/deuterium Deuterium structure
gas_injection_rates/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/tritium Tritium structure
gas_injection_rates/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/helium_3 Helium isotope with 3 nucleons structure
gas_injection_rates/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/helium_4 Helium isotope with 4 nucleons structure
gas_injection_rates/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/impurity_seeding Flag set to 1 if any gas other than H, D, T, He is puffed during the pulse, 0 otherwise structure
gas_injection_rates/impurity_seeding/value Value {constant} INT_0D
gas_injection_rates/impurity_seeding/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/beryllium Beryllium structure
gas_injection_rates/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/lithium Lithium structure
gas_injection_rates/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/carbon Carbon structure
gas_injection_rates/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/oxygen Oxygen structure
gas_injection_rates/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/nitrogen Nitrogen structure
gas_injection_rates/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/neon Neon structure
gas_injection_rates/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/argon Argon structure
gas_injection_rates/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/xenon Xenon structure
gas_injection_rates/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/krypton Krypton structure
gas_injection_rates/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/methane Methane (CH4) structure
gas_injection_rates/methane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/methane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/methane_carbon_13 Methane (CH4 with carbon 13) structure
gas_injection_rates/methane_carbon_13/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/methane_carbon_13/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/methane_deuterated Deuterated methane (CD4) structure
gas_injection_rates/methane_deuterated/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/methane_deuterated/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/silane Silane (SiH4) structure
gas_injection_rates/silane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/silane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/ethylene Ethylene (C2H4) structure
gas_injection_rates/ethylene/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/ethylene/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/ethane Ethane (C2H6) structure
gas_injection_rates/ethane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/ethane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/propane Propane (C3H8) structure
gas_injection_rates/propane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/propane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/ammonia Ammonia (NH3) structure
gas_injection_rates/ammonia/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/ammonia/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_rates/ammonia_deuterated Deuterated ammonia (ND3) structure
gas_injection_rates/ammonia_deuterated/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_rates/ammonia_deuterated/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated Accumulated injected gas since the plasma breakdown in equivalent electrons [electrons]. Introduced after DD version 3.36.0 structure
gas_injection_accumulated/total Total accumulated injected gas (sum over species) structure
gas_injection_accumulated/total/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/midplane Accumulated gas injected from all valves located near the equatorial midplane structure
gas_injection_accumulated/midplane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/midplane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/top Accumulated gas injected from all valves located near the top of the vacuum chamber structure
gas_injection_accumulated/top/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/top/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/bottom Accumulated gas injected from all valves located near near the bottom of the vacuum chamber structure
gas_injection_accumulated/bottom/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/bottom/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/hydrogen Hydrogen structure
gas_injection_accumulated/hydrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/deuterium Deuterium structure
gas_injection_accumulated/deuterium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/tritium Tritium structure
gas_injection_accumulated/tritium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/helium_3 Helium isotope with 3 nucleons structure
gas_injection_accumulated/helium_3/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/helium_4 Helium isotope with 4 nucleons structure
gas_injection_accumulated/helium_4/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/impurity_seeding Flag set to 1 if any gas other than H, D, T, He is puffed during the pulse, 0 otherwise structure
gas_injection_accumulated/impurity_seeding/value Value {constant} INT_0D
gas_injection_accumulated/impurity_seeding/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/beryllium Beryllium structure
gas_injection_accumulated/beryllium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/lithium Lithium structure
gas_injection_accumulated/lithium/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/carbon Carbon structure
gas_injection_accumulated/carbon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/oxygen Oxygen structure
gas_injection_accumulated/oxygen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/nitrogen Nitrogen structure
gas_injection_accumulated/nitrogen/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/neon Neon structure
gas_injection_accumulated/neon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/argon Argon structure
gas_injection_accumulated/argon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/xenon Xenon structure
gas_injection_accumulated/xenon/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/krypton Krypton structure
gas_injection_accumulated/krypton/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/methane Methane (CH4) structure
gas_injection_accumulated/methane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/methane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/methane_carbon_13 Methane (CH4 with carbon 13) structure
gas_injection_accumulated/methane_carbon_13/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/methane_carbon_13/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/methane_deuterated Deuterated methane (CD4) structure
gas_injection_accumulated/methane_deuterated/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/methane_deuterated/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/silane Silane (SiH4) structure
gas_injection_accumulated/silane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/silane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/ethylene Ethylene (C2H4) structure
gas_injection_accumulated/ethylene/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/ethylene/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/ethane Ethane (C2H6) structure
gas_injection_accumulated/ethane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/ethane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/propane Propane (C3H8) structure
gas_injection_accumulated/propane/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/propane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/ammonia Ammonia (NH3) structure
gas_injection_accumulated/ammonia/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/ammonia/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_accumulated/ammonia_deuterated Deuterated ammonia (ND3) structure
gas_injection_accumulated/ammonia_deuterated/value(:) Value {dynamic} [as_parent_level_2] FLT_1D 1- time
gas_injection_accumulated/ammonia_deuterated/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill Accumulated injected gas during the prefill in equivalent electrons [electrons]. Introduced after DD version 3.37.2 structure
gas_injection_prefill/total Total accumulated injected gas (sum over species) structure
gas_injection_prefill/total/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/total/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/midplane Accumulated gas injected from all valves located near the equatorial midplane structure
gas_injection_prefill/midplane/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/midplane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/top Accumulated gas injected from all valves located near the top of the vacuum chamber structure
gas_injection_prefill/top/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/top/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/bottom Accumulated gas injected from all valves located near near the bottom of the vacuum chamber structure
gas_injection_prefill/bottom/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/bottom/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/hydrogen Hydrogen structure
gas_injection_prefill/hydrogen/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/hydrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/deuterium Deuterium structure
gas_injection_prefill/deuterium/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/deuterium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/tritium Tritium structure
gas_injection_prefill/tritium/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/tritium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/helium_3 Helium isotope with 3 nucleons structure
gas_injection_prefill/helium_3/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/helium_3/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/helium_4 Helium isotope with 4 nucleons structure
gas_injection_prefill/helium_4/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/helium_4/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/impurity_seeding Flag set to 1 if any gas other than H, D, T, He is puffed during the prefill, 0 otherwise structure
gas_injection_prefill/impurity_seeding/value Value {constant} INT_0D
gas_injection_prefill/impurity_seeding/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/beryllium Beryllium structure
gas_injection_prefill/beryllium/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/beryllium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/lithium Lithium structure
gas_injection_prefill/lithium/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/lithium/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/carbon Carbon structure
gas_injection_prefill/carbon/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/carbon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/oxygen Oxygen structure
gas_injection_prefill/oxygen/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/oxygen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/nitrogen Nitrogen structure
gas_injection_prefill/nitrogen/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/nitrogen/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/neon Neon structure
gas_injection_prefill/neon/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/neon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/argon Argon structure
gas_injection_prefill/argon/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/argon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/xenon Xenon structure
gas_injection_prefill/xenon/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/xenon/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/krypton Krypton structure
gas_injection_prefill/krypton/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/krypton/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/methane Methane (CH4) structure
gas_injection_prefill/methane/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/methane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/methane_carbon_13 Methane (CH4 with carbon 13) structure
gas_injection_prefill/methane_carbon_13/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/methane_carbon_13/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/methane_deuterated Deuterated methane (CD4) structure
gas_injection_prefill/methane_deuterated/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/methane_deuterated/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/silane Silane (SiH4) structure
gas_injection_prefill/silane/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/silane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/ethylene Ethylene (C2H4) structure
gas_injection_prefill/ethylene/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/ethylene/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/ethane Ethane (C2H6) structure
gas_injection_prefill/ethane/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/ethane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/propane Propane (C3H8) structure
gas_injection_prefill/propane/value Value {constant} [as_parent] FLT_0D
gas_injection_prefill/propane/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/ammonia Ammonia (NH3) structure
gas_injection_prefill/ammonia/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/ammonia/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
gas_injection_prefill/ammonia_deuterated Deuterated ammonia (ND3) structure
gas_injection_prefill/ammonia_deuterated/value Value {constant} [as_parent_level_2] FLT_0D
gas_injection_prefill/ammonia_deuterated/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive Heating and current drive parameters structure
heating_current_drive/ec(i1) Set of ECRH/ECCD launchers array of structures [max_size=6 (limited in MDS+ backend only)] 1- 1...N
heating_current_drive/ec(i1)/frequency ECRH frequency [Hz] structure
heating_current_drive/ec(i1)/frequency/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/frequency/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/position Position of the maximum of the ECRH power deposition, in rho_tor_norm [-] structure
heating_current_drive/ec(i1)/position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/polarisation Polarisation of the ECRH waves (0 = O mode, 1 = X mode) structure
heating_current_drive/ec(i1)/polarisation/value(:) Value {dynamic} INT_1D 1- time
heating_current_drive/ec(i1)/polarisation/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/harmonic Harmonic number of the absorbed ECRH waves structure
heating_current_drive/ec(i1)/harmonic/value(:) Value {dynamic} INT_1D 1- time
heating_current_drive/ec(i1)/harmonic/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/angle_tor
Lifecycle status: obsolescent since version 3.42.0
Toroidal angle of ECRH at resonance [rad]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
heating_current_drive/ec(i1)/angle_tor/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/angle_tor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/phi Toroidal angle of ECRH at resonance [rad]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
tor_angle_like .sigma_rphiz_eff
structure
heating_current_drive/ec(i1)/phi/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/phi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/angle_pol Poloidal angle of ECRH at resonance [rad] structure
heating_current_drive/ec(i1)/angle_pol/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/angle_pol/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/power Electron cyclotron heating power coupled to the plasma from this launcher [W] structure
heating_current_drive/ec(i1)/power/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/power/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/power_launched Electron cyclotron heating power launched into the vacuum vessel from this launcher [W] structure
heating_current_drive/ec(i1)/power_launched/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/power_launched/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/current Parallel current driven by EC waves [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
heating_current_drive/ec(i1)/current/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/current/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ec(i1)/energy_fast Fast particle energy content driven by EC waves [J] structure
heating_current_drive/ec(i1)/energy_fast/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ec(i1)/energy_fast/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1) Set of NBI units array of structures [max_size=32 (limited in MDS+ backend only)] 1- 1...N
heating_current_drive/nbi(i1)/species Injected species structure
heating_current_drive/nbi(i1)/species/a Mass of atom [Atomic Mass Unit] structure
heating_current_drive/nbi(i1)/species/a/value Value {constant} [as_parent] FLT_0D
heating_current_drive/nbi(i1)/species/a/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/species/z_n Nuclear charge [Elementary Charge Unit] structure
heating_current_drive/nbi(i1)/species/z_n/value Value {constant} [as_parent] FLT_0D
heating_current_drive/nbi(i1)/species/z_n/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/species/label
Lifecycle status: obsolescent since version 3.42.0
String identifying the species (e.g. H, D, T, ...) structure
heating_current_drive/nbi(i1)/species/label/value Value {constant} STR_0D
heating_current_drive/nbi(i1)/species/label/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/species/name String identifying the species (e.g. H, D, T, ...) structure
heating_current_drive/nbi(i1)/species/name/value Value {constant} STR_0D
heating_current_drive/nbi(i1)/species/name/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/power NBI power coupled to the plasma by this unit (i.e. without shine-through and fast ion losses) [W] structure
heating_current_drive/nbi(i1)/power/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/nbi(i1)/power/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/power_launched NBI power launched into the vacuum vessel from this unit [W] structure
heating_current_drive/nbi(i1)/power_launched/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/nbi(i1)/power_launched/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/current Parallel current driven by this NBI unit [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
heating_current_drive/nbi(i1)/current/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/nbi(i1)/current/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/position R, Z, Phi position of the NBI unit centre structure
heating_current_drive/nbi(i1)/position/r Major radius [m] structure
heating_current_drive/nbi(i1)/position/r/value Value {static} [as_parent] FLT_0D
heating_current_drive/nbi(i1)/position/r/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/position/z Height [m] structure
heating_current_drive/nbi(i1)/position/z/value Value {static} [as_parent] FLT_0D
heating_current_drive/nbi(i1)/position/z/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/position/phi Toroidal angle [rad] structure
heating_current_drive/nbi(i1)/position/phi/value Value {static} [as_parent] FLT_0D
heating_current_drive/nbi(i1)/position/phi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/tangency_radius Tangency radius (major radius where the central line of a NBI unit is tangent to a circle around the torus) [m] structure
heating_current_drive/nbi(i1)/tangency_radius/value Value {static} [as_parent] FLT_0D
heating_current_drive/nbi(i1)/tangency_radius/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/angle Angle of inclination between a beamlet at the centre of the injection unit surface and the horizontal plane [rad] structure
heating_current_drive/nbi(i1)/angle/value Value {static} [as_parent] FLT_0D
heating_current_drive/nbi(i1)/angle/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/direction Direction of the beam seen from above the torus: -1 = clockwise; 1 = counter clockwise structure
heating_current_drive/nbi(i1)/direction/value Value {static} INT_0D
heating_current_drive/nbi(i1)/direction/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/energy Full energy of the injected species (acceleration of a single atom) [eV] structure
heating_current_drive/nbi(i1)/energy/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/nbi(i1)/energy/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/beam_current_fraction Fractions of beam current distributed among the different energies, the first index corresponds to the fast neutrals energy (1:full, 2: half, 3: one third) [-] structure
heating_current_drive/nbi(i1)/beam_current_fraction/value(:,:) Value {dynamic} [as_parent] FLT_2D 1- 1...3
2- time
heating_current_drive/nbi(i1)/beam_current_fraction/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/nbi(i1)/beam_power_fraction Fractions of beam power distributed among the different energies, the first index corresponds to the fast neutrals energy (1:full, 2: half, 3: one third) [-] structure
heating_current_drive/nbi(i1)/beam_power_fraction/value(:,:) Value {dynamic} [as_parent] FLT_2D 1- 1...3
2- time
heating_current_drive/nbi(i1)/beam_power_fraction/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1) Set of ICRH launchers array of structures [max_size=6 (limited in MDS+ backend only)] 1- 1...N
heating_current_drive/ic(i1)/frequency ICRH frequency [Hz] structure
heating_current_drive/ic(i1)/frequency/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/frequency/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/position Position of the maximum of the ICRH power deposition, in rho_tor_norm [-] structure
heating_current_drive/ic(i1)/position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/n_tor
Lifecycle status: obsolescent since version 3.42.0
Main toroidal mode number of IC waves. The wave vector toroidal component is defined as k_tor = n_tor grad phi where phi is the toroidal angle so that a positive n_tor means a wave propagating in the positive phi direction structure
heating_current_drive/ic(i1)/n_tor/value(:) Value {dynamic} INT_1D 1- time
heating_current_drive/ic(i1)/n_tor/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/n_phi Main toroidal mode number of IC waves. The wave vector toroidal component is defined as k_phi = n_phi grad phi where phi is the toroidal angle so that a positive n_tor means a wave propagating in the positive phi direction structure
heating_current_drive/ic(i1)/n_phi/value(:) Value {dynamic} INT_1D 1- time
heating_current_drive/ic(i1)/n_phi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/k_perpendicular Main perpendicular wave number of IC waves [m^-1] structure
heating_current_drive/ic(i1)/k_perpendicular/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/k_perpendicular/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/e_field_plus_minus_ratio Average E+/E- power ratio of IC waves [-] structure
heating_current_drive/ic(i1)/e_field_plus_minus_ratio/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/e_field_plus_minus_ratio/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/harmonic Harmonic number of the absorbed ICRH waves structure
heating_current_drive/ic(i1)/harmonic/value(:) Value {dynamic} INT_1D 1- time
heating_current_drive/ic(i1)/harmonic/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/phase Phase between straps [rad] structure
heating_current_drive/ic(i1)/phase/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/phase/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/power IC heating power coupled to the plasma from this launcher [W] structure
heating_current_drive/ic(i1)/power/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/power/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/power_launched IC heating power launched into the vacuum vessel from this launcher [W] structure
heating_current_drive/ic(i1)/power_launched/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/power_launched/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/current Parallel current driven by IC waves [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
heating_current_drive/ic(i1)/current/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/current/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/ic(i1)/energy_fast Fast particle energy content driven by IC waves [J] structure
heating_current_drive/ic(i1)/energy_fast/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/ic(i1)/energy_fast/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/lh(i1) Set of LHCD launchers array of structures [max_size=6 (limited in MDS+ backend only)] 1- 1...N
heating_current_drive/lh(i1)/frequency LH wave frequency [Hz] structure
heating_current_drive/lh(i1)/frequency/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/lh(i1)/frequency/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/lh(i1)/position Position of the maximum of the LH power deposition, in rho_tor_norm [-] structure
heating_current_drive/lh(i1)/position/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/lh(i1)/position/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/lh(i1)/n_parallel Main parallel refractive index of LH waves at launch [-] structure
heating_current_drive/lh(i1)/n_parallel/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/lh(i1)/n_parallel/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/lh(i1)/power LH heating power coupled to the plasma from this launcher [W] structure
heating_current_drive/lh(i1)/power/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/lh(i1)/power/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/lh(i1)/power_launched LH heating power launched into the vacuum vessel from this launcher [W] structure
heating_current_drive/lh(i1)/power_launched/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/lh(i1)/power_launched/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/lh(i1)/current Parallel current driven by LH waves [A]. This quantity is COCOS-dependent, with the following transformation :
Label Expression
ip_like .sigma_ip_eff
structure
heating_current_drive/lh(i1)/current/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/lh(i1)/current/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/lh(i1)/energy_fast Fast particle energy content driven by LH waves [J] structure
heating_current_drive/lh(i1)/energy_fast/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/lh(i1)/energy_fast/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_ec Total EC power coupled to the plasma [W] structure
heating_current_drive/power_ec/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_ec/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_launched_ec Total EC power launched from EC launchers into the vacuum vessel [W] structure
heating_current_drive/power_launched_ec/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_launched_ec/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_nbi Total NBI power coupled to the plasma [W] structure
heating_current_drive/power_nbi/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_nbi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_launched_nbi Total NBI power launched from neutral beam injectors into the vacuum vessel [W] structure
heating_current_drive/power_launched_nbi/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_launched_nbi/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_launched_nbi_co_injected_ratio Ratio of co-injected beam launched power to total NBI launched power. Is set to 1 for purely perpendicular injection [-] structure
heating_current_drive/power_launched_nbi_co_injected_ratio/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_launched_nbi_co_injected_ratio/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_ic Total IC power coupled to the plasma [W] structure
heating_current_drive/power_ic/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_ic/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_launched_ic Total IC power launched from IC antennas into the vacuum vessel [W] structure
heating_current_drive/power_launched_ic/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_launched_ic/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_lh Total LH power coupled to the plasma [W] structure
heating_current_drive/power_lh/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_lh/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_launched_lh Total LH power launched from LH antennas into the vacuum vessel [W] structure
heating_current_drive/power_launched_lh/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_launched_lh/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
heating_current_drive/power_additional Total additional external power (NBI+EC+IC+LH, without ohmic) coupled to the plasma [W] structure
heating_current_drive/power_additional/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
heating_current_drive/power_additional/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
kicks Vertical kicks of the plasma position structure
kicks/occurrence Flag set to 1 if vertical kicks of the plasma position are used during the pulse, 0 otherwise [Hz] structure
kicks/occurrence/value Value {constant} INT_0D
kicks/occurrence/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
pellets Pellet related quantities structure
pellets/occurrence Flag set to 1 if there is any pellet injected during the pulse, 0 otherwise [Hz] structure
pellets/occurrence/value Value {constant} INT_0D
pellets/occurrence/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
rmps Resonant magnetic perturbations related quantities structure
rmps/occurrence Flag set to 1 if resonant magnetic perturbations are used during the pulse, 0 otherwise [Hz] structure
rmps/occurrence/value Value {constant} INT_0D
rmps/occurrence/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
runaways Runaway electrons structure
runaways/particles Number of runaway electrons [-] structure
runaways/particles/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
runaways/particles/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
runaways/current Parallel current driven by the runaway electrons [A] structure
runaways/current/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
runaways/current/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
scrape_off_layer Scrape-Off-Layer (SOL) characteristics structure
scrape_off_layer/t_e_decay_length Electron temperature radial decay length inv(grad Te/Te) [m] structure
scrape_off_layer/t_e_decay_length/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
scrape_off_layer/t_e_decay_length/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
scrape_off_layer/t_i_average_decay_length Ion temperature (average over ion species) radial decay length inv(grad Ti/Ti) [m] structure
scrape_off_layer/t_i_average_decay_length/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
scrape_off_layer/t_i_average_decay_length/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
scrape_off_layer/n_e_decay_length Electron density radial decay length inv(grad ne/ne) [m] structure
scrape_off_layer/n_e_decay_length/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
scrape_off_layer/n_e_decay_length/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
scrape_off_layer/n_i_total_decay_length Ion density radial decay length inv(grad ni/ni) [m] structure
scrape_off_layer/n_i_total_decay_length/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
scrape_off_layer/n_i_total_decay_length/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
scrape_off_layer/heat_flux_e_decay_length Electron heat flux radial decay length inv(grad qe/qe) [m] structure
scrape_off_layer/heat_flux_e_decay_length/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
scrape_off_layer/heat_flux_e_decay_length/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
scrape_off_layer/heat_flux_i_decay_length Ion heat flux radial decay length inv(grad qi/qi) [m] structure
scrape_off_layer/heat_flux_i_decay_length/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
scrape_off_layer/heat_flux_i_decay_length/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
scrape_off_layer/power_radiated Power radiated from the SOL [W] structure
scrape_off_layer/power_radiated/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
scrape_off_layer/power_radiated/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
scrape_off_layer/pressure_neutral Neutral pressure in the SOL [Pa] structure
scrape_off_layer/pressure_neutral/value(:) Value {dynamic} [as_parent] FLT_1D 1- time
scrape_off_layer/pressure_neutral/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
wall Wall characteristics structure
wall/material Wall material. Available options (refer to the children of this identifier structure) :
Name Index Description
unspecified 0 unspecified
C 1 Carbon
W 2 Tungsten
C_W_coating 3 Carbon with tungsten coating
SS 4 Stainless steel
SS_C_coating 5 Stainless steel with carbon coating
IN 6 Inconel
IN_C_coating 7 Inconel with carbon coating
BC 8 Boron carbide
BN 17 Boron nitride
Ti_C_coating 9 Titanium with carbon coating
Be 10 Beryllium
Mo 11 Molybdenum
Quartz 12 Quartz
Ge 13 Germanium
Si 14 Silicon
LiF 15 Lithium fluoride
InSb 16 Indium antimonide
Cu 18 Copper
CuCrZr 19 Copper Chromium Zirconium alloy
U_235 20 Uranium 235 isotope
U_238 21 Uranium 238 isotope
Diamond 22 Diamond
CxHy 23 Organic molecule
LaCl3 24 Lanthanum chloride
LaBr 25 Lanthanum bromide
HPGe 26 High Purity Germanium
CeBr 27 Cesium bromide
CZT 28 Cadmium zinc telluride
In_115 29 Indium 115 isotope
He_4 30 Helium 4 isotope
structure
wall/material/name Short string identifier {static} STR_0D
wall/material/index Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index. {static} INT_0D
wall/material/description Verbose description {static} STR_0D
wall/evaporation Chemical formula of the evaporated material or gas used to cover the vaccum vessel wall. NONE for no evaporation. structure
wall/evaporation/value Value {static} STR_0D
wall/evaporation/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
limiter Limiter characteristics structure
limiter/material Limiter material. Available options (refer to the children of this identifier structure) :
Name Index Description
unspecified 0 unspecified
C 1 Carbon
W 2 Tungsten
C_W_coating 3 Carbon with tungsten coating
SS 4 Stainless steel
SS_C_coating 5 Stainless steel with carbon coating
IN 6 Inconel
IN_C_coating 7 Inconel with carbon coating
BC 8 Boron carbide
BN 17 Boron nitride
Ti_C_coating 9 Titanium with carbon coating
Be 10 Beryllium
Mo 11 Molybdenum
Quartz 12 Quartz
Ge 13 Germanium
Si 14 Silicon
LiF 15 Lithium fluoride
InSb 16 Indium antimonide
Cu 18 Copper
CuCrZr 19 Copper Chromium Zirconium alloy
U_235 20 Uranium 235 isotope
U_238 21 Uranium 238 isotope
Diamond 22 Diamond
CxHy 23 Organic molecule
LaCl3 24 Lanthanum chloride
LaBr 25 Lanthanum bromide
HPGe 26 High Purity Germanium
CeBr 27 Cesium bromide
CZT 28 Cadmium zinc telluride
In_115 29 Indium 115 isotope
He_4 30 Helium 4 isotope
structure
limiter/material/name Short string identifier {static} STR_0D
limiter/material/index Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index. {static} INT_0D
limiter/material/description Verbose description {static} STR_0D
time_breakdown Time of the plasma breakdown [s]. Introduced after DD version 3.36.0 structure
time_breakdown/value Value {constant} [as_parent] FLT_0D
time_breakdown/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
plasma_duration Duration of existence of a confined plasma during the pulse [s]. Introduced after DD version 3.36.0 structure
plasma_duration/value Value {constant} [as_parent] FLT_0D
plasma_duration/source Source of the data (any comment describing the origin of the data : code, path to diagnostic signals, processing method, ...) {constant} STR_0D
time_width(:) In case the time-dependent quantities of this IDS are averaged over a time interval, this node is the width of this time interval (empty otherwise). By convention, the time interval starts at time-time_width and ends at time. {dynamic} [s] FLT_1D 1- time
code Generic decription of the code-specific parameters for the code that has produced this IDS structure
code/name Name of software generating IDS {constant} STR_0D
code/description Short description of the software (type, purpose) {constant}. Introduced after DD version 3.38.1 STR_0D
code/commit Unique commit reference of software {constant} STR_0D
code/version Unique version (tag) of software {constant} STR_0D
code/repository URL of software repository {constant} STR_0D
code/parameters List of the code specific parameters in XML format {constant} STR_0D
code/output_flag(:) Output flag : 0 means the run is successful, other values mean some difficulty has been encountered, the exact meaning is then code specific. Negative values mean the result shall not be used. {dynamic} INT_1D 1- time
code/library(i1) List of external libraries used by the code that has produced this IDS array of structures [max_size=10 (limited in MDS+ backend only)] 1- 1...N
code/library(i1)/name Name of software {constant} STR_0D
code/library(i1)/description Short description of the software (type, purpose) {constant}. Introduced after DD version 3.38.1 STR_0D
code/library(i1)/commit Unique commit reference of software {constant} STR_0D
code/library(i1)/version Unique version (tag) of software {constant} STR_0D
code/library(i1)/repository URL of software repository {constant} STR_0D
code/library(i1)/parameters List of the code specific parameters in XML format {constant} STR_0D
time(:) Generic time {dynamic} [s] FLT_1D 1- 1...N

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