{
  "Spase": {
    "xmlns": "http://www.spase-group.org/data/schema",
    "xmlns:xsi": "http://www.w3.org/2001/XMLSchema-instance",
    "xsi:schemaLocation": "http://www.spase-group.org/data/schema http://www.spase-group.org/data/schema/spase-2_6_1.xsd",
    "_Note": "Nodes prefixed with a _ are not valid SPASE, but are included for debugging. Values prefixed with a x_ are not valid SPASE but may considered for addition for completeness.",
    "Version": "2.6.1",
    "_MasterURL": "https://cdaweb.gsfc.nasa.gov/pub/software/cdawlib/0JSONS/imap_swe_l3_sci_00000000_v01.json (from all.xml)",
    "NumericalData": {
      "ResourceID": null,
      "_ResourceID": "Source: https://github.com/rweigel/cdawmeta-spase/blob/main/ResourceID.json",
      "ResourceHeader": {
        "ResourceName": "SWE Instrument Level-3 Science Data",
        "_ResourceName": "Source: Master/CDFglobalAttributes/Logical_source_description",
        "AlternateName": "imap_swe_l3_sci",
        "_AlternateName": "Source: Master/CDFglobalAttributes/Logical_source",
        "Description": "The IMAP Solar Wind Electron (SWE) instrument measures the solar wind electrons in the heliosphere. SWE will contribute to our understanding of the acceleration and transport of charged particles in the heliosphere. SWE design and assembly is led by the Los Alamos National Laboratory. See https://imap.princeton.edu/spacecraft/instruments/solar-wind-electron-swe for more details. ",
        "_Description": "Source: Master/CDFglobalAttributes/TEXT",
        "Acknowledgement": "Users should acknowledge the sources of data used in all publications, presentations, and reports using an appropriate DOI. Appropriate acknowledgement to institutions, personnel, and funding agencies should be given, including acknowledging the IMAP Mission Principal Investigator, Prof. David J. McComas of Princeton University (Contract #80GSFC19C0027). IMAP Rules-of-the-Road for data usage can be found in the IMAP CMAD. ",
        "_Acknowledgement": "Source: Master/CDFglobalAttributes/Acknowledgement",
        "_Rights": {
          "Name": "SPDX",
          "Description": "Creative Commons Zero v1.0 Universal",
          "URL": "https://spdx.org/licenses/CC0-1.0.html",
          "SchemeURI": "https://spdx.org/licenses/"
        },
        "InformationURL": [
          {
            "URL": "https://imap.princeton.edu/",
            "Name": "IMAP The Interstellar Mapping and Acceleration Probe",
            "Description": " ",
            "_Note": "URL also in all.xml. Using master."
          },
          {
            "URL": "https://link.springer.com/collections/djacjcecei",
            "Name": "IMAP Mission and Science Instruments Special Paper Collection",
            "Description": " ",
            "_Note": "URL also in all.xml. Using master."
          },
          {
            "URL": "https://spdf.gsfc.nasa.gov/pub/data/imap/documents/cmad/",
            "Name": "IMAP Calibration and Measurement Algorithms Document (CMAD)",
            "Description": " ",
            "_Note": "URL also in all.xml. Using master."
          }
        ]
      },
      "Caveats": "All IMAP data products are publicly released and citable for use in publications. Please consult the IMAP team publications and personnel for further details on production, processing, and usage of these data. ",
      "_Caveats": "Source: Master/CDFglobalAttributes/Rules_of_use",
      "DOI": null,
      "_DOI": "Source: https://github.com/rweigel/cdawmeta-spase/blob/main/DOI.json",
      "AccessInformation": [
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/CDAWeb. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "CDF"
          ],
          "Style": "Listing",
          "AccessURL": {
            "Name": "HTTPS from SPDF",
            "URL": "https://cdaweb.gsfc.nasa.gov/pub/data/imap/swe/l3/sci",
            "Description": "In CDF via HTTP from CDAWeb",
            "AccessFilenameTemplate": "imap_swe_l3_sci_%Y%m%d_%Q.cdf",
            "AccessDirectoryTemplate": "%Y",
            "ProductKey": "IMAP_SWE_L3_SCI"
          }
        },
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/CDAWeb. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "CDF"
          ],
          "Style": "Listing",
          "AccessURL": {
            "Name": "FTPS from SPDF",
            "URL": "ftps://cdaweb.gsfc.nasa.gov/pub/data/imap/swe/l3/sci",
            "Description": "In CDF via HTTP from CDAWeb",
            "AccessFilenameTemplate": "imap_swe_l3_sci_%Y%m%d_%Q.cdf",
            "AccessDirectoryTemplate": "%Y",
            "ProductKey": "IMAP_SWE_L3_SCI"
          }
        },
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/CDAWeb. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "CDF",
            "CSV",
            "GIF",
            "NetCDF",
            "PNG",
            "PS",
            "PDF",
            "XML",
            "x_Script.IDL",
            "x_Script.Python",
            "Text.ASCII",
            "x_WAV"
          ],
          "AccessURL": {
            "Name": "CDAWeb Web Service",
            "URL": "https://cdaweb.gsfc.nasa.gov/WebServices/",
            "Style": "WebService",
            "Description": "Instructions for using web services to access this dataset an other other metadata and options for CDAWeb datasets. The ProductKey here corresponds to the query parameter 'dataset' in the tables at the AccessURL in a dataset-related request can be made.",
            "ProductKey": "IMAP_SWE_L3_SCI"
          }
        },
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/CDAWeb. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "CDF",
            "GIF",
            "PDF",
            "Text.ASCII",
            "x_WAV"
          ],
          "AccessURL": {
            "Name": "CDAWeb Web Service user interface",
            "URL": "https://cdaweb.gsfc.nasa.gov/cgi-bin/eval2.cgi?index=sp_phys&dataset=IMAP_SWE_L3_SCI",
            "Style": "WebService",
            "ProductKey": "IMAP_SWE_L3_SCI",
            "Description": "Web service user interface for this product."
          }
        },
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/CDAWeb. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "x_Script.IDL",
            "x_Script.Python"
          ],
          "AccessURL": {
            "Name": "CDAWeb Python Script",
            "URL": "https://cdaweb.gsfc.nasa.gov/WS/cdasr/1/dataviews/sp_phys/datasets/IMAP_SWE_L3_SCI/clientLibraryExample/",
            "ProductKey": "IMAP_SWE_L3_SCI",
            "Style": "WebService",
            "Description": "Web service that generates a Python script to access this product."
          }
        },
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/SSCWeb. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "HTML"
          ],
          "AccessURL": {
            "Name": "4D Orbit Viewer",
            "URL": "https://sscweb.gsfc.nasa.gov/4dorbit/?sc=IMAP_SWE_L3_SCI",
            "ProductKey": "IMAP_SWE_L3_SCI",
            "Style": "x_Visualization",
            "Description": "Web Service to this product."
          }
        },
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/CDAWeb and the HAPI project. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "CSV",
            "JSON",
            "Binary"
          ],
          "AccessURL": {
            "Name": "CDAWeb HAPI Server",
            "URL": "https://hapi-server.org/servers/#server=CDAWeb&dataset=IMAP_SWE_L3_SCI",
            "Style": "HAPI",
            "ProductKey": "IMAP_SWE_L3_SCI",
            "Description": "Web Service to this product using the HAPI interface."
          }
        },
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/CDAWeb and the HAPI project. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "x_Script.IDL",
            "x_Script.Javascript",
            "x_Script.MATLAB",
            "x_Script.Python",
            "x_Script.Autoplot",
            "x_Script.curl",
            "x_Script.wget"
          ],
          "AccessURL": {
            "Name": "CDAWeb HAPI Script in Multiple Languages",
            "URL": "https://hapi-server.org/servers/#server=CDAWeb&dataset=IMAP_SWE_L3_SCI&return=script",
            "Style": "HAPI",
            "ProductKey": "IMAP_SWE_L3_SCI",
            "Description": "Web Service user interface that generates scripts in IDL, Javascript, MATLAB, Python, Autoplot, curl, wget to access this product. See https://hapi-server.org/servers/api for the API."
          }
        },
        {
          "RepositoryID": "spase://SMWG/Repository/NASA/GSFC/SPDF",
          "Availability": "Online",
          "AccessRights": "Open",
          "Acknowledgement": "SPDF/CDAWeb and the HAPI project. Please also acknowledge the data producer: Prof. David J. McComas at Princeton University",
          "Format": [
            "PNG",
            "PDF",
            "SVG"
          ],
          "AccessURL": {
            "Name": "HAPI visualizations",
            "URL": "https://hapi-server.org/plot/?server=https://cdaweb.gsfc.nasa.gov/hapi&dataset=IMAP_SWE_L3_SCI&format=gallery",
            "Style": "x_Visualization",
            "ProductKey": "IMAP_SWE_L3_SCI",
            "Description": "Web Service that generates plots. See https://hapi-server.org/plot/ for the API."
          }
        }
      ],
      "_AccessInformation": "Source: https://github.com/rweigel/cdawmeta-spase/blob/main/AccessInformation.json",
      "TemporalDescription": {
        "TimeSpan": {
          "StartDate": "2025-11-07T23:59:41Z",
          "StopDate": "2026-04-30T15:17:16Z"
        },
        "_TemporalDescription": "Generated from all.xml/@timerange_start and all.xml/@timerange_stop",
        "Cadence": "PT1M1.547873S",
        "_Cadence": "Counts based on variable 'epoch' in https://cdaweb.gsfc.nasa.gov/sp_phys/data/imap/swe/l3/sci/2026/imap_swe_l3_sci_20260428_v001.0072.cdf. The most common cadence, 61547873000 [ns] = PT1M1.547873S, occurred for 10.4850% of the 147 timesteps."
      },
      "Keyword": [
        "Interstellar Mapping and Acceleration Probe (from all.xml/observatory/description/@short)",
        "Solar Wind Electron (from all.xml/instrument/description/@short)",
        "Solar Physics (from Master/CDFglobalAttributes/Discipline)",
        "Heliospheric Physics (from Master/CDFglobalAttributes/Discipline)",
        "IMAP (from Master/CDFglobalAttributes/Source_name)",
        "Interstellar Mapping and Acceleration Probe (from Master/CDFglobalAttributes/Source_name)",
        "L3_SCI (from Master/CDFglobalAttributes/Data_type)",
        "Level-3 Science data (from Master/CDFglobalAttributes/Data_type)",
        "SWE (from all.xml/instrument/@ID)"
      ],
      "ObservedRegion": null,
      "_ObservedRegion": "Source: https://github.com/rweigel/cdawmeta-spase/blob/main/ObservedRegion.json",
      "ProcessingLevel": null,
      "_ProcessingLevel": "Processing level is not available in the master file; it should be there instead of, say, https://github.com/rweigel/cdawmeta-spase/blob/main/ProcessingLevel.json",
      "InstrumentID": null,
      "MeasurementType": null,
      "Parameter2": [
        {
          "Name": "Epoch",
          "ParameterKey": "epoch",
          "Description": "CATDESC: 'Time since J2000'. Notes not in Master CDF: 'The units are the units in CDF files. For other web services, this variable is may be represented as a time string.'",
          "Units": "ns",
          "Support": {
            "Qualifier": "Scalar",
            "SupportQuantity": "Temporal"
          }
        },
        {
          "Name": "Epoch Delta",
          "ParameterKey": "epoch_delta",
          "Description": "Master CDF CATDESC: 'Time bin half-width in nanoseconds'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "ns",
          "FillValue": -9223372036854775808
        },
        {
          "Name": "Electron Phase Space Density",
          "ParameterKey": "phase_space_density_by_pitch_angle",
          "Description": "Master CDF CATDESC: 'Phase space density by pitch angle'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "s^3 cm^-6",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24,
              20
            ]
          }
        },
        {
          "Name": "Electron Phase Space Density",
          "ParameterKey": "phase_space_density_by_pitch_angle_and_gyrophase",
          "Description": "Master CDF CATDESC: 'Phase space density by pitch angle and gyrophase'. Master CDF VAR_NOTES: 'Sparsely sampled: there are more pitch/gyro angle bins than actual measurement directions.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "s^3 cm^-6",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24,
              20,
              24
            ]
          }
        },
        {
          "Name": "Electron Phase Space Density",
          "ParameterKey": "phase_space_density_1d",
          "Description": "Master CDF CATDESC: 'Electron phase space density (1d)'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "s^3 cm^-6",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24
            ]
          }
        },
        {
          "Name": "Electron Phase Space Density Inward",
          "ParameterKey": "phase_space_density_inward",
          "Description": "Master CDF CATDESC: 'Electron phase space density (inward)'. Master CDF VAR_NOTES: 'Inward/outward are each integrated over half the pitch angle distribution (0-90 or 90-180 degree pitch angle), with outward being the larger and inward the smaller of these two.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "s^3 cm^-6",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24
            ]
          }
        },
        {
          "Name": "Electron Phase Space Density Outward",
          "ParameterKey": "phase_space_density_outward",
          "Description": "Master CDF CATDESC: 'Electron phase space density (outward)'. Master CDF VAR_NOTES: 'Inward/outward are each integrated over half the pitch angle distribution (0-90 or 90-180 degree pitch angle), with outward being the larger and inward the smaller of these two.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "s^3 cm^-6",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24
            ]
          }
        },
        {
          "Name": "Electron Intensity",
          "ParameterKey": "intensity_by_pitch_angle",
          "Description": "Master CDF CATDESC: 'Intensity by pitch angle'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "cm^-2 sr^-1 s^-1 eV^-1",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24,
              20
            ]
          }
        },
        {
          "Name": "Electron Intensity",
          "ParameterKey": "intensity_by_pitch_angle_and_gyrophase",
          "Description": "Master CDF CATDESC: 'Intensity by pitch angle and gyrophase'. Master CDF VAR_NOTES: 'Sparsely sampled: there are more pitch/gyro angle bins than actual measurement directions.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "cm^-2 sr^-1 s^-1 eV^-1",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24,
              20,
              24
            ]
          }
        },
        {
          "Name": "Electron Intensity Uncertainty",
          "ParameterKey": "intensity_uncertainty_by_pitch_angle",
          "Description": "Master CDF CATDESC: 'Uncertainty of intensity by pitch angle'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "cm^-2 sr^-1 s^-1 eV^-1",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24,
              20
            ]
          }
        },
        {
          "Name": "Electron Intensity Uncertainty",
          "ParameterKey": "intensity_uncertainty_by_pitch_angle_and_gyrophase",
          "Description": "Master CDF CATDESC: 'Uncertainty of intensity by pitch angle and gyrophase'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "cm^-2 sr^-1 s^-1 eV^-1",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24,
              20,
              24
            ]
          }
        },
        {
          "Name": "Spacecraft Potential At SWE",
          "ParameterKey": "spacecraft_potential",
          "Description": "Master CDF CATDESC: 'IMAP spacecraft potential calculated at SWE'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "V",
          "FillValue": -1e+31
        },
        {
          "Name": "Core/Halo Breakpoint",
          "ParameterKey": "core_halo_breakpoint",
          "Description": "Master CDF CATDESC: 'SW electron core/halo breakpoint'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "eV",
          "FillValue": -1e+31
        },
        {
          "Name": " ",
          "ParameterKey": "core_fit_num_points",
          "Description": "Master CDF CATDESC: 'Number of energies used on core fit'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -2147483648
        },
        {
          "Name": "Core Chi-square",
          "ParameterKey": "core_chisq",
          "Description": "Master CDF CATDESC: 'Chi square error for core moment fitting'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Chi-square",
          "ParameterKey": "halo_chisq",
          "Description": "Master CDF CATDESC: 'Chi square error for halo moment fitting'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Density Fit",
          "ParameterKey": "core_density_fit",
          "Description": "Master CDF CATDESC: 'Density of core electrons found through Maxwellian fitting'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "#/cm^3",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Density Fit",
          "ParameterKey": "halo_density_fit",
          "Description": "Master CDF CATDESC: 'Density of halo electrons found through Maxwellian fitting'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "#/cm^3",
          "FillValue": -1e+31
        },
        {
          "Name": "Core T Parallel Fit",
          "ParameterKey": "core_t_parallel_fit",
          "Description": "Master CDF CATDESC: 'Core t_parallel fit'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo T Parallel Fit",
          "ParameterKey": "halo_t_parallel_fit",
          "Description": "Master CDF CATDESC: 'Halo t_parallel fit'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Core T Perpendicular Fit",
          "ParameterKey": "core_t_perpendicular_fit",
          "Description": "Master CDF CATDESC: 'Core t_perpendicular fit'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo T Perpendicular Fit",
          "ParameterKey": "halo_t_perpendicular_fit",
          "Description": "Master CDF CATDESC: 'Halo t_perpendicular fit'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Temperature Phi RTN Fit",
          "ParameterKey": "core_temperature_phi_rtn_fit",
          "Description": "Master CDF CATDESC: 'Core temperature fit, rotated to RTN coordinates, phi'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit. In RTN coordinates, phi is the angle in the R-T plane.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Temperature Phi RTN Fit",
          "ParameterKey": "halo_temperature_phi_rtn_fit",
          "Description": "Master CDF CATDESC: 'Halo temperature fit, rotated to RTN coordinates, phi'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit. In RTN coordinates, phi is the angle in the R-T plane.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Temperature Theta RTN Fit",
          "ParameterKey": "core_temperature_theta_rtn_fit",
          "Description": "Master CDF CATDESC: 'Core temperature fit, rotated to RTN coordinates, theta'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit. In RTN coordinates, theta is the angle relative to the N axis.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Temperature Theta RTN Fit",
          "ParameterKey": "halo_temperature_theta_rtn_fit",
          "Description": "Master CDF CATDESC: 'Halo temperature fit, rotated to RTN coordinates, theta'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit. In RTN coordinates, theta is the angle relative to the N axis.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Speed Fit",
          "ParameterKey": "core_speed_fit",
          "Description": "Master CDF CATDESC: 'Core speed fit'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Speed Fit",
          "ParameterKey": "halo_speed_fit",
          "Description": "Master CDF CATDESC: 'Halo speed fit'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Velocity Vector RTN Fit",
          "ParameterKey": "core_velocity_vector_rtn_fit",
          "Description": "Master CDF CATDESC: 'Core velocity vector RTN fit'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              3
            ]
          }
        },
        {
          "Name": "Halo Velocity Vector RTN Fit",
          "ParameterKey": "halo_velocity_vector_rtn_fit",
          "Description": "Master CDF CATDESC: 'Halo velocity vector RTN fit'. Master CDF VAR_NOTES: 'Analytically calculated from Bi-Maxellian fit. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              3
            ]
          }
        },
        {
          "Name": "Core Density Integrated",
          "ParameterKey": "core_density_integrated",
          "Description": "Master CDF CATDESC: 'Density of core electrons found through numerical integration'. Master CDF VAR_NOTES: 'Numerically integrated'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "#/cm^3",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Density Integrated",
          "ParameterKey": "halo_density_integrated",
          "Description": "Master CDF CATDESC: 'Halo density integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "#/cm^3",
          "FillValue": -1e+31
        },
        {
          "Name": "Total Density Integrated",
          "ParameterKey": "total_density_integrated",
          "Description": "Master CDF CATDESC: 'Total density integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "#/cm^3",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Speed Integrated",
          "ParameterKey": "core_speed_integrated",
          "Description": "Master CDF CATDESC: 'Core speed integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Speed Integrated",
          "ParameterKey": "halo_speed_integrated",
          "Description": "Master CDF CATDESC: 'Halo speed integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31
        },
        {
          "Name": "Total Speed Integrated",
          "ParameterKey": "total_speed_integrated",
          "Description": "Master CDF CATDESC: 'Total speed integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Velocity Vector RTN Integrated",
          "ParameterKey": "core_velocity_vector_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Core velocity vector RTN integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              3
            ]
          }
        },
        {
          "Name": "Halo Velocity Vector RTN Integrated",
          "ParameterKey": "halo_velocity_vector_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Halo velocity vector RTN integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              3
            ]
          }
        },
        {
          "Name": "Total Velocity Vector RTN Integrated",
          "ParameterKey": "total_velocity_vector_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Total velocity vector RTN integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. Recommend using SWAPI ion measurements for solar wind speed/velocity.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "km/s",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              3
            ]
          }
        },
        {
          "Name": "Core Heat Flux Magnitude Integrated",
          "ParameterKey": "core_heat_flux_magnitude_integrated",
          "Description": "Master CDF CATDESC: 'Core heat flux magnitude integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "uW / m^2",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Heat Flux Theta Integrated",
          "ParameterKey": "core_heat_flux_theta_integrated",
          "Description": "Master CDF CATDESC: 'Core heat flux theta integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Heat Flux Phi Integrated",
          "ParameterKey": "core_heat_flux_phi_integrated",
          "Description": "Master CDF CATDESC: 'Core heat flux phi integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Heat Flux Magnitude Integrated",
          "ParameterKey": "halo_heat_flux_magnitude_integrated",
          "Description": "Master CDF CATDESC: 'Halo heat flux magnitude integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "uW / m^2",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Heat Flux Theta Integrated",
          "ParameterKey": "halo_heat_flux_theta_integrated",
          "Description": "Master CDF CATDESC: 'Halo heat flux integrated, rotated to RTN coordinates, theta'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Heat Flux Phi Integrated",
          "ParameterKey": "halo_heat_flux_phi_integrated",
          "Description": "Master CDF CATDESC: 'Halo heat flux integrated, rotated to RTN coordinates, phi'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Total Heat Flux Magnitude Integrated",
          "ParameterKey": "total_heat_flux_magnitude_integrated",
          "Description": "Master CDF CATDESC: 'Total heat flux magnitude integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "uW / m^2",
          "FillValue": -1e+31
        },
        {
          "Name": "Total Heat Flux Theta Integrated",
          "ParameterKey": "total_heat_flux_theta_integrated",
          "Description": "Master CDF CATDESC: 'Total heat flux integrated, rotated to RTN coordinates, theta'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Total Heat Flux Phi Integrated",
          "ParameterKey": "total_heat_flux_phi_integrated",
          "Description": "Master CDF CATDESC: 'Total heat flux integrated, rotated to RTN coordinates, phi'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Core T Parallel Integrated",
          "ParameterKey": "core_t_parallel_integrated",
          "Description": "Master CDF CATDESC: 'Core t_parallel integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Core T Perpendicular Integrated",
          "ParameterKey": "core_t_perpendicular_integrated",
          "Description": "Master CDF CATDESC: 'Average of two perpendicular core temperature eigenvalues'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Core T Ratio Perpendicular Integrated",
          "ParameterKey": "core_t_ratio_perpendicular_integrated",
          "Description": "Master CDF CATDESC: 'Ratio of perpendicular core temperature eigenvalues'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo T Parallel Integrated",
          "ParameterKey": "halo_t_parallel_integrated",
          "Description": "Master CDF CATDESC: 'Halo t_parallel integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo T Perpendicular Integrated",
          "ParameterKey": "halo_t_perpendicular_integrated",
          "Description": "Master CDF CATDESC: 'Average of two perpendicular halo temperature eigenvalues'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo T Ratio Perpendicular Integrated",
          "ParameterKey": "halo_t_ratio_perpendicular_integrated",
          "Description": "Master CDF CATDESC: 'Ratio of two perpendicular halo temperature eigenvalues'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Total T Parallel Integrated",
          "ParameterKey": "total_t_parallel_integrated",
          "Description": "Master CDF CATDESC: 'Total t_parallel integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Total T Perpendicular Integrated",
          "ParameterKey": "total_t_perpendicular_integrated",
          "Description": "Master CDF CATDESC: 'Average of perpendicular total temperature eigenvalues'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Total T Ratio Perpendicular Integrated",
          "ParameterKey": "total_t_ratio_perpendicular_integrated",
          "Description": "Master CDF CATDESC: 'Ratio of perpendicular total temperature eigenvalues'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Temperature Theta RTN Integrated",
          "ParameterKey": "core_temperature_theta_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Core temperature theta RTN integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Temperature Phi RTN Integrated",
          "ParameterKey": "core_temperature_phi_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Core temperature integrated, rotated to RTN coordinates, phi'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Temperature Theta RTN Integrated",
          "ParameterKey": "halo_temperature_theta_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Halo temperature integrated, rotated to RTN coordinates, theta'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Temperature Phi Rtn Integrated",
          "ParameterKey": "halo_temperature_phi_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Halo temperature integrated, rotated to RTN coordinates, phi'. Master CDF 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.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Total Temperature Theta RTN Integrated",
          "ParameterKey": "total_temperature_theta_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Total temperature integrated, rotated to RTN coordinates, theta'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, theta is the angle relative to the N axis.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Total Temperature Phi RTN Integrated",
          "ParameterKey": "total_temperature_phi_rtn_integrated",
          "Description": "Master CDF CATDESC: 'Total temperature integrated, rotated to RTN coordinates, phi'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution. In RTN coordinates, phi is the angle in the R-T plane.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "degrees",
          "FillValue": -1e+31
        },
        {
          "Name": "Core T Integrated Parallel To Mag",
          "ParameterKey": "core_temperature_parallel_to_mag",
          "Description": "Master CDF CATDESC: 'Core temperature parallel to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Core T Integrated Perpendicular To Mag",
          "ParameterKey": "core_temperature_perpendicular_to_mag",
          "Description": "Master CDF CATDESC: 'Average of two core temperature eigenvalues perpendicular to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Integrated T Ratio Perpendicular To Mag",
          "ParameterKey": "core_temperature_ratio_perpendicular_to_mag",
          "Description": "Master CDF CATDESC: 'Ratio of core two temperature eigenvalues perpendicular to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo T Integrated Parallel To Mag",
          "ParameterKey": "halo_temperature_parallel_to_mag",
          "Description": "Master CDF CATDESC: 'Halo temperature parallel to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo T Integrated Perpendicular To Mag",
          "ParameterKey": "halo_temperature_perpendicular_to_mag",
          "Description": "Master CDF CATDESC: 'Halo temperature perpendicular to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Halo Integrated T Ratio Perpendicular To Mag",
          "ParameterKey": "halo_temperature_ratio_perpendicular_to_mag",
          "Description": "Master CDF CATDESC: 'Ratio of two halo temperatures perpendicular to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Total T Integrated Parallel To Mag",
          "ParameterKey": "total_temperature_parallel_to_mag",
          "Description": "Master CDF CATDESC: 'Total temperature parallel to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Total T Integrated Perpendicular To Mag",
          "ParameterKey": "total_temperature_perpendicular_to_mag",
          "Description": "Master CDF CATDESC: 'Total temperature perpendicular to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "K",
          "FillValue": -1e+31
        },
        {
          "Name": "Total Integrated T Ratio Perpendicular To Mag",
          "ParameterKey": "total_temperature_ratio_perpendicular_to_mag",
          "Description": "Master CDF CATDESC: 'Ratio of total two temperature eigenvalues perpendicular to mag'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution, rotated to the measured magnetic field direction'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31
        },
        {
          "Name": "Core Temperature Tensor Integrated",
          "ParameterKey": "core_temperature_tensor_integrated",
          "Description": "Master CDF CATDESC: 'Core temperature tensor integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "10^4 K",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              6
            ]
          }
        },
        {
          "Name": "Halo Temperature Tensor Integrated",
          "ParameterKey": "halo_temperature_tensor_integrated",
          "Description": "Master CDF CATDESC: 'Halo temperature tensor integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "10^4 K",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              6
            ]
          }
        },
        {
          "Name": "Total Temperature Tensor Integrated",
          "ParameterKey": "total_temperature_tensor_integrated",
          "Description": "Master CDF CATDESC: 'Total temperature tensor integrated'. Master CDF VAR_NOTES: 'Calculated by integration over the measured phase space distribution'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "10^4 K",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              6
            ]
          }
        },
        {
          "Name": "Quality Flags for SWE L3",
          "ParameterKey": "swe_flags",
          "Description": "Master CDF CATDESC: 'Quality flags for SWE L3 (caution required if nonzero)'. Master CDF VAR_NOTES: 'Each bit corresponds to a specific potential concern. 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. Reserved to indicate predictive ephemeris was used instead of reconstructed ephemeris.'. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": "0: okay; nonzero: caution",
          "FillValue": 65535
        },
        {
          "Name": "Raw 1D PSD",
          "ParameterKey": "raw_1d_psd_rebinned",
          "Description": "Master CDF CATDESC: 'Raw 1D PSD from rebinned data'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24
            ]
          }
        },
        {
          "Name": "Raw PSD by theta",
          "ParameterKey": "raw_psd_by_theta_rebinned",
          "Description": "Master CDF CATDESC: 'Raw PSD by polar angle theta from rebinned data'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24,
              7
            ]
          }
        },
        {
          "Name": "Raw PSD by phi",
          "ParameterKey": "raw_psd_by_phi_rebinned",
          "Description": "Master CDF CATDESC: 'Raw PSD by spin angle phi from rebinned data'. Master CDF VAR_NOTES: ''. Notes not in Master CDF: 'The time index (the ISTP DEPEND_0 variable) for this parameter is epoch.'",
          "Units": " ",
          "FillValue": -1e+31,
          "Structure": {
            "Size": [
              24,
              30
            ]
          }
        }
      ]
    }
  }
}