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fit"}]}]},{"core_t_parallel_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core t_parallel fit"},{"FIELDNAM":"Core T Parallel Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t parallel fit"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit"}]}]},{"halo_t_parallel_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo t_parallel fit"},{"FIELDNAM":"Halo T Parallel Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t parallel fit"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit"}]}]},{"core_t_perpendicular_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core t_perpendicular fit"},{"FIELDNAM":"Core T Perpendicular Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t perpendicular fit"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit"}]}]},{"halo_t_perpendicular_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo t_perpendicular fit"},{"FIELDNAM":"Halo T Perpendicular Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t perpendicular fit"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit"}]}]},{"core_temperature_phi_rtn_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core temperature fit, rotated to RTN coordinates, phi"},{"FIELDNAM":"Core Temperature Phi RTN Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core T phi"},{"UNITS":"degrees"},{"VALIDMIN":-180.0},{"VALIDMAX":180.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit. In RTN coordinates, phi is the angle in the R-T plane."}]}]},{"halo_temperature_phi_rtn_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo temperature fit, rotated to RTN coordinates, phi"},{"FIELDNAM":"Halo Temperature Phi RTN Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo T phi"},{"UNITS":"degrees"},{"VALIDMIN":-180.0},{"VALIDMAX":180.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit. In RTN coordinates, phi is the angle in the R-T plane."}]}]},{"core_temperature_theta_rtn_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core temperature fit, rotated to RTN coordinates, theta"},{"FIELDNAM":"Core Temperature Theta RTN Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core T theta"},{"UNITS":"degrees"},{"VALIDMIN":-90.0},{"VALIDMAX":90.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit. In RTN coordinates, theta is the angle relative to the N axis."}]}]},{"halo_temperature_theta_rtn_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo temperature fit, rotated to RTN coordinates, theta"},{"FIELDNAM":"Halo Temperature Theta RTN Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo T theta"},{"UNITS":"degrees"},{"VALIDMIN":-90.0},{"VALIDMAX":90.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit. In RTN coordinates, theta is the angle relative to the N axis."}]}]},{"core_speed_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core speed fit"},{"FIELDNAM":"Core Speed Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core speed fit"},{"UNITS":"km/s"},{"VALIDMIN":0.0},{"VALIDMAX":5000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"SCALEMIN":0.0},{"SCALEMAX":1000.0},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"halo_speed_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo speed fit"},{"FIELDNAM":"Halo Speed Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo speed fit"},{"UNITS":"km/s"},{"VALIDMIN":0.0},{"VALIDMAX":50000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"core_velocity_vector_rtn_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":1},{"DimSizes":[3]},{"RecVariance":"VARY"},{"DimVariances":["VARY"]},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core velocity vector RTN fit"},{"FIELDNAM":"Core Velocity Vector RTN Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core v vec rtn fit"},{"UNITS":"km/s"},{"VALIDMIN":-5000.0},{"VALIDMAX":5000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"LABL_PTR_1":"core_velocity_vector_rtn_fit_label"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"halo_velocity_vector_rtn_fit":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":1},{"DimSizes":[3]},{"RecVariance":"VARY"},{"DimVariances":["VARY"]},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo velocity vector RTN fit"},{"FIELDNAM":"Halo Velocity Vector RTN Fit"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo v vec rtn fit"},{"UNITS":"km/s"},{"VALIDMIN":-50000.0},{"VALIDMAX":50000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"LABL_PTR_1":"halo_velocity_vector_rtn_fit_label"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Analytically calculated from Bi-Maxellian fit. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"core_density_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Density of core electrons found through numerical integration"},{"FIELDNAM":"Core Density Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core density integrated"},{"UNITS":"#/cm^3"},{"VALIDMIN":0.0},{"VALIDMAX":500.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"SCALEMIN":0.0},{"SCALEMAX":20.0},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Numerically integrated"}]}]},{"halo_density_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo density integrated"},{"FIELDNAM":"Halo Density Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo density integrated"},{"UNITS":"#/cm^3"},{"VALIDMIN":0.0},{"VALIDMAX":100.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"SCALEMIN":0.0},{"SCALEMAX":1.0},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"total_density_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total density integrated"},{"FIELDNAM":"Total Density Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total density integrated"},{"UNITS":"#/cm^3"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+10},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"SCALEMIN":0.0},{"SCALEMAX":20.0},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"core_speed_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core speed integrated"},{"FIELDNAM":"Core Speed Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core speed integrated"},{"UNITS":"km/s"},{"VALIDMIN":0.0},{"VALIDMAX":5000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"SCALEMIN":0.0},{"SCALEMAX":5000.0},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"halo_speed_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo speed integrated"},{"FIELDNAM":"Halo Speed Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo speed integrated"},{"UNITS":"km/s"},{"VALIDMIN":0.0},{"VALIDMAX":50000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"total_speed_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total speed integrated"},{"FIELDNAM":"Total Speed Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total speed integrated"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":5000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"core_velocity_vector_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":1},{"DimSizes":[3]},{"RecVariance":"VARY"},{"DimVariances":["VARY"]},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core velocity vector RTN integrated"},{"FIELDNAM":"Core Velocity Vector RTN Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core v vec rtn int."},{"UNITS":"km/s"},{"VALIDMIN":-5000.0},{"VALIDMAX":5000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"LABL_PTR_1":"core_velocity_vector_rtn_integrated_label"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"halo_velocity_vector_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":1},{"DimSizes":[3]},{"RecVariance":"VARY"},{"DimVariances":["VARY"]},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo velocity vector RTN integrated"},{"FIELDNAM":"Halo Velocity Vector RTN Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo v vec rtn int."},{"UNITS":"km/s"},{"VALIDMIN":-50000.0},{"VALIDMAX":50000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"LABL_PTR_1":"halo_velocity_vector_rtn_integrated_label"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"total_velocity_vector_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":1},{"DimSizes":[3]},{"RecVariance":"VARY"},{"DimVariances":["VARY"]},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total velocity vector RTN integrated"},{"FIELDNAM":"Total Velocity Vector RTN Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total v vec rtn int."},{"UNITS":"km/s"},{"VALIDMIN":-5000.0},{"VALIDMAX":5000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"LABL_PTR_1":"total_velocity_vector_rtn_integrated_label"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity."}]}]},{"core_heat_flux_magnitude_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core heat flux magnitude integrated"},{"FIELDNAM":"Core Heat Flux Magnitude Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core heat flux magnitude integrated"},{"UNITS":"uW / m^2"},{"VALIDMIN":0.0},{"VALIDMAX":100.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"core_heat_flux_theta_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core heat flux theta integrated"},{"FIELDNAM":"Core Heat Flux Theta Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core heat flux theta integrated"},{"UNITS":"degrees"},{"VALIDMIN":-90.0},{"VALIDMAX":90.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis."}]}]},{"core_heat_flux_phi_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core heat flux phi integrated"},{"FIELDNAM":"Core Heat Flux Phi Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core heat flux phi integrated"},{"UNITS":"degrees"},{"VALIDMIN":-180.0},{"VALIDMAX":180.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane."}]}]},{"halo_heat_flux_magnitude_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo heat flux magnitude integrated"},{"FIELDNAM":"Halo Heat Flux Magnitude Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo heat flux magnitude integrated"},{"UNITS":"uW / m^2"},{"VALIDMIN":0.0},{"VALIDMAX":100.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"halo_heat_flux_theta_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo heat flux integrated, rotated to RTN coordinates, theta"},{"FIELDNAM":"Halo Heat Flux Theta Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo heat flux theta integrated"},{"UNITS":"degrees"},{"VALIDMIN":-90.0},{"VALIDMAX":90.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis."}]}]},{"halo_heat_flux_phi_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo heat flux integrated, rotated to RTN coordinates, phi"},{"FIELDNAM":"Halo Heat Flux Phi Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo heat flux phi integrated"},{"UNITS":"degrees"},{"VALIDMIN":-180.0},{"VALIDMAX":180.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane."}]}]},{"total_heat_flux_magnitude_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total heat flux magnitude integrated"},{"FIELDNAM":"Total Heat Flux Magnitude Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total heat flux magnitude integrated"},{"UNITS":"uW / m^2"},{"VALIDMIN":0.0},{"VALIDMAX":100.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"total_heat_flux_theta_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total heat flux integrated, rotated to RTN coordinates, theta"},{"FIELDNAM":"Total Heat Flux Theta Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total heat flux theta integrated"},{"UNITS":"degrees"},{"VALIDMIN":-90.0},{"VALIDMAX":90.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis."}]}]},{"total_heat_flux_phi_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total heat flux integrated, rotated to RTN coordinates, phi"},{"FIELDNAM":"Total Heat Flux Phi Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total heat flux phi integrated"},{"UNITS":"degrees"},{"VALIDMIN":-180.0},{"VALIDMAX":180.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane."}]}]},{"core_t_parallel_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core t_parallel integrated"},{"FIELDNAM":"Core T Parallel Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t parallel integrated"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+10},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"core_t_perpendicular_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Average of two perpendicular core temperature eigenvalues"},{"FIELDNAM":"Core T Perpendicular Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t perpendicular integrated"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"core_t_ratio_perpendicular_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Ratio of perpendicular core temperature eigenvalues"},{"FIELDNAM":"Core T Ratio Perpendicular Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t ratio"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":10.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"halo_t_parallel_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo t_parallel integrated"},{"FIELDNAM":"Halo T Parallel Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t parallel integrated"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+10},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"halo_t_perpendicular_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Average of two perpendicular halo temperature eigenvalues"},{"FIELDNAM":"Halo T Perpendicular Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t perpendicular integrated"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"halo_t_ratio_perpendicular_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Ratio of two perpendicular halo temperature eigenvalues"},{"FIELDNAM":"Halo T Ratio Perpendicular Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t ratio"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":10.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"total_t_parallel_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total t_parallel integrated"},{"FIELDNAM":"Total T Parallel Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t parallel integrated"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+10},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"total_t_perpendicular_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Average of perpendicular total temperature eigenvalues"},{"FIELDNAM":"Total T Perpendicular Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t perpendicular integrated"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"total_t_ratio_perpendicular_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Ratio of perpendicular total temperature eigenvalues"},{"FIELDNAM":"Total T Ratio Perpendicular Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t ratio"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":10.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"core_temperature_theta_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core temperature theta RTN integrated"},{"FIELDNAM":"Core Temperature Theta RTN Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t theta rtn integrated"},{"UNITS":"degrees"},{"VALIDMIN":-90.0},{"VALIDMAX":90.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"core_temperature_phi_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core temperature integrated, rotated to RTN coordinates, phi"},{"FIELDNAM":"Core Temperature Phi RTN Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core_t phi RTN integrated"},{"UNITS":"degrees"},{"VALIDMIN":-180.0},{"VALIDMAX":180.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane."}]}]},{"halo_temperature_theta_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo temperature integrated, rotated to RTN coordinates, theta"},{"FIELDNAM":"Halo Temperature Theta RTN Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t theta rtn integrated"},{"UNITS":"degrees"},{"VALIDMIN":-90.0},{"VALIDMAX":90.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis."}]}]},{"halo_temperature_phi_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo temperature integrated, rotated to RTN coordinates, phi"},{"FIELDNAM":"Halo Temperature Phi Rtn Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t phi rtn integrated"},{"UNITS":"degrees"},{"VALIDMIN":-180.0},{"VALIDMAX":180.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction. In RTN coordinates, phi is the angle in the R-T plane."}]}]},{"total_temperature_theta_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total temperature integrated, rotated to RTN coordinates, theta"},{"FIELDNAM":"Total Temperature Theta RTN Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t theta rtn integrated"},{"UNITS":"degrees"},{"VALIDMIN":-90.0},{"VALIDMAX":90.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis."}]}]},{"total_temperature_phi_rtn_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total temperature integrated, rotated to RTN coordinates, phi"},{"FIELDNAM":"Total Temperature Phi RTN Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t phi rtn integrated"},{"UNITS":"degrees"},{"VALIDMIN":-180.0},{"VALIDMAX":180.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane."}]}]},{"core_temperature_parallel_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core temperature parallel to mag"},{"FIELDNAM":"Core T Integrated Parallel To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core temperature parallel to mag"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction"}]}]},{"core_temperature_perpendicular_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Average of two core temperature eigenvalues perpendicular to mag"},{"FIELDNAM":"Core T Integrated Perpendicular To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t perpendicular to mag"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction"}]}]},{"core_temperature_ratio_perpendicular_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Ratio of core two temperature eigenvalues perpendicular to mag"},{"FIELDNAM":"Core Integrated T Ratio Perpendicular To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t ratio"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":10.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction"}]}]},{"halo_temperature_parallel_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo temperature parallel to mag"},{"FIELDNAM":"Halo T Integrated Parallel To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t parallel to mag"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction"}]}]},{"halo_temperature_perpendicular_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo temperature perpendicular to mag"},{"FIELDNAM":"Halo T Integrated Perpendicular To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t perpendicular to mag"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction"}]}]},{"halo_temperature_ratio_perpendicular_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Ratio of two halo temperatures perpendicular to mag"},{"FIELDNAM":"Halo Integrated T Ratio Perpendicular To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t ratio"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":10.0},{"VAR_TYPE":"data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction"}]}]},{"total_temperature_parallel_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total temperature parallel to mag"},{"FIELDNAM":"Total T Integrated Parallel To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t parallel to mag"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"total_temperature_perpendicular_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total temperature perpendicular to mag"},{"FIELDNAM":"Total T Integrated Perpendicular To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t perpendicular to mag"},{"UNITS":"K"},{"VALIDMIN":0.0},{"VALIDMAX":1.0E+7},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction"}]}]},{"total_temperature_ratio_perpendicular_to_mag":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":0},{"RecVariance":"VARY"},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Ratio of total two temperature eigenvalues perpendicular to mag"},{"FIELDNAM":"Total Integrated T Ratio Perpendicular To Mag"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t ratio"},{"UNITS":" "},{"VALIDMIN":0.0},{"VALIDMAX":10.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DISPLAY_TYPE":"time_series"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction"}]}]},{"core_temperature_tensor_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":1},{"DimSizes":[6]},{"RecVariance":"VARY"},{"DimVariances":["VARY"]},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Core temperature tensor integrated"},{"FIELDNAM":"Core Temperature Tensor Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Core t tensor integrated"},{"UNITS":"10^4 K"},{"VALIDMIN":-1000.0},{"VALIDMAX":1000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DEPEND_1":"tensor_id"},{"DISPLAY_TYPE":"time_series"},{"LABL_PTR_1":"core_temperature_tensor_integrated_label"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"halo_temperature_tensor_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":1},{"DimSizes":[6]},{"RecVariance":"VARY"},{"DimVariances":["VARY"]},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Halo temperature tensor integrated"},{"FIELDNAM":"Halo Temperature Tensor Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Halo t tensor integrated"},{"UNITS":"10^4 K"},{"VALIDMIN":-1000.0},{"VALIDMAX":1000.0},{"VAR_TYPE":"support_data"},{"DEPEND_0":"epoch"},{"DEPEND_1":"tensor_id"},{"DISPLAY_TYPE":"time_series"},{"LABL_PTR_1":"halo_temperature_tensor_integrated_label"},{"VARIABLE_PURPOSE":"PRIMARY_VAR,SUMMARY"},{"VAR_NOTES":"Calculated by integration over the measured phase space distribution"}]}]},{"total_temperature_tensor_integrated":[{"VarDescription":[{"DataType":"CDF_REAL4"},{"NumElements":1},{"NumDims":1},{"DimSizes":[6]},{"RecVariance":"VARY"},{"DimVariances":["VARY"]},{"PadValue":-1.0E+30}]},{"VarAttributes":[{"CATDESC":"Total temperature tensor integrated"},{"FIELDNAM":"Total Temperature Tensor Integrated"},{"FILLVAL":-1.0E+31},{"FORMAT":"F15.3"},{"LABLAXIS":"Total t tensor integrated"},{"UNITS":"10^4 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See release notes for details. Bit 2: first 4 points of the PSD 1D Rebinned are linear in log PSD - log energy space; spacecraft_potential is set to 2.5 V Bit 3: breakpoint finding algortithm fell back to a spline method, which failed Bit 4: fit to resolve the photo-core breakpoint fell back to spline method Bit 5: fit to resolve the core-halo breakpoint fell back to spline method Bit 6: Unimplemented. Reserved to indicate any of IMAP Ultra deflectors are turned off. (Nominal is when IMAP Ultra deflectors are turned on) Bit 7: any temperature product yielded a value found to be an extreme statistical outlier, similar to a spike removal routine. Bit 8: preliminary MAG L1D was used for acquiring the magnetic field direction instead of the nominal MAG L2 product. Bit 9: solar wind vector is unresolved, but measured speed is used from SWAPI L3A Bit 10: any density or temperature moment is negative (unphysical) Bit 11: any PSD value is unphysically large (>1e-19). Bit 12: passthrough of LAST_CAL_INTERVAL from L2 Quality Flags: calibration was extrapolated using the last two entries in the calibration table. Bit 13: Unimplemented. 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