Commit de5907c4c094be4a24a60b43edd84f772811bf1e

Authored by Quentin Brzustowski
1 parent 904bbbd0

created Dataset ISOIS LET2

NumericalData/CDPP-AMDA/PSP/epiHi/psp-let2-1hr.xml 0 → 100644
... ... @@ -0,0 +1,337 @@
  1 +<?xml version="1.0" encoding="UTF-8"?>
  2 +<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_3_0.xsd">
  3 + <Version>2.3.0</Version>
  4 + <NumericalData>
  5 + <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiHi/psp-let2-1hr</ResourceID>
  6 + <ResourceHeader>
  7 + <ResourceName>LET2 1h</ResourceName>
  8 + <AlternateName>Low Energy Telescope 2, 1h rate</AlternateName>
  9 + <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate>
  10 + <Description>
  11 + LET1 and LET2 are similar in design to the HET, cylinders containing a central stack of detector disks and positionally
  12 + sensitive detectors at the ends. LET1 has 1000-micron thick detector disks in the central stack, except for the end disks
  13 + which are 500 microns. At the front of the cylinder, separate from the central stack, is a 12 micron thick disk and then a
  14 + 25 micron disk. The back of the detector has the same arrangement. The front of the detector also has a thin window
  15 + (~3 micron silicon equivalent). The 12, 25, and 500 micron thick disks are all separated into five active elements in the
  16 + same way as the HET for positional determination. LET2 is similar to LET1 but does not have the end 12, 25, and 500 micron disks.
  17 + The Low-Energy Telescopes can measure protons and heavy ions from approximately
  18 + 1 MeV to greater than 20 MeV/n and electrons from about 0.5 MeV to 2 MeV.
  19 + </Description>
  20 + <Acknowledgement>
  21 + Please acknowledge the National Aeronautics and Space Administration, NASA
  22 + </Acknowledgement>
  23 + <Contact>
  24 + <PersonID>spase://SMWG/Person/David.J.McComas</PersonID>
  25 + <Role>PrincipalInvestigator</Role>
  26 + </Contact>
  27 + <Contact>
  28 + <PersonID>spase://SMWG/Person/Eric.R.Christan</PersonID>
  29 + <Role>DeputyPI</Role>
  30 + </Contact>
  31 + <InformationURL>
  32 + <Name>PSP/ISoIS Energetic Particle Data - User Guide</Name>
  33 + <URL>https://spdf.sci.gsfc.nasa.gov/pub/data/psp/isois/ISOIS_Data_Glossary.pdf</URL>
  34 + </InformationURL>
  35 + <InformationURL>
  36 + <Name>Parker Solar Probe Mission Instrument web page, JPL</Name>
  37 + <URL>http://parkersolarprobe.jhuapl.edu/Spacecraft/index.php#Instruments</URL>
  38 + </InformationURL>
  39 + </ResourceHeader>
  40 + <AccessInformation>
  41 + <RepositoryID>spase://SMWG/Repository/CNES/CDPP-AMDA</RepositoryID>
  42 + <Availability>Online</Availability>
  43 + <AccessRights>Open</AccessRights>
  44 + <AccessURL>
  45 + <Name>AMDA at CDPP</Name>
  46 + <URL>
  47 + http://amda.cdpp.eu
  48 + </URL>
  49 + </AccessURL>
  50 + <Format>Text</Format>
  51 + <Acknowledgement>
  52 + AMDA is a science analysis system provided by the Centre de Donnees de la
  53 + Physique des Plasmas (CDPP) supported by CNRS, CNES, Observatoire de Paris and
  54 + Universite Paul Sabatier, Toulouse
  55 + </Acknowledgement>
  56 + </AccessInformation>
  57 + <ProviderName>SPDF</ProviderName>
  58 + <ProviderAcknowlegment>
  59 + Please acknowledge the CDAWeb team at GSFC/SPDF.</ProviderAcknowlegment>
  60 + <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/PSP/epiHi</InstrumentID>
  61 + <MeasurementType>EnergeticParticles</MeasurementType>
  62 + <TemporalDescription>
  63 + <TimeSpan>
  64 + <StartDate>2018-09-02T00:00:12Z</StartDate>
  65 + <StopDate>2025-08-12T23:59:55Z</StopDate>
  66 + </TimeSpan>
  67 + <Cadence>PT3600S</Cadence>
  68 + </TemporalDescription>
  69 + <ObservedRegion>Heliosphere.Inner</ObservedRegion>
  70 + <ObservedRegion>Sun.Corona</ObservedRegion>
  71 + <Parameter>
  72 + <Name>h+ flux side C</Name>
  73 + <ParameterKey>psp_let2_1h_Hf</ParameterKey>
  74 + <Description>
  75 + Proton flux side C
  76 + </Description>
  77 + <Units>1/cm²/sr/s/(MeV/nuc)</Units>
  78 + <RenderingHints>
  79 + <DisplayType>Spectrogram</DisplayType>
  80 + </RenderingHints>
  81 + <Particle>
  82 + <ParticleQuantity>EnergyFlux</ParticleQuantity>
  83 + </Particle>
  84 + </Parameter>
  85 + <Parameter>
  86 + <Name>he flux side C</Name>
  87 + <ParameterKey>psp_let2_1h_Hef</ParameterKey>
  88 + <Description>
  89 + Helium flux side C
  90 + </Description>
  91 + <Units>1/cm²/sr/s/(MeV/nuc)</Units>
  92 + <RenderingHints>
  93 + <DisplayType>Spectrogram</DisplayType>
  94 + </RenderingHints>
  95 + <Particle>
  96 + <ParticleQuantity>EnergyFlux</ParticleQuantity>
  97 + </Particle>
  98 + </Parameter>
  99 + <Parameter>
  100 + <Name>h+ rate side C</Name>
  101 + <ParameterKey>psp_let2_1h_Hr</ParameterKey>
  102 + <Description>
  103 + proton rate side C
  104 + </Description>
  105 + <Units>counts/s</Units>
  106 + <RenderingHints>
  107 + <DisplayType>Spectrogram</DisplayType>
  108 + </RenderingHints>
  109 + <Particle>
  110 + <ParticleQuantity>CountRate</ParticleQuantity>
  111 + </Particle>
  112 + </Parameter>
  113 + <Parameter>
  114 + <Name>he rate side C</Name>
  115 + <ParameterKey>psp_let2_1h_Her</ParameterKey>
  116 + <Description>
  117 + Helium rate side C
  118 + </Description>
  119 + <Units>counts/s</Units>
  120 + <RenderingHints>
  121 + <DisplayType>Spectrogram</DisplayType>
  122 + </RenderingHints>
  123 + <Particle>
  124 + <ParticleQuantity>CountRate</ParticleQuantity>
  125 + </Particle>
  126 + </Parameter>
  127 + <Parameter>
  128 + <Name>si rate side C</Name>
  129 + <ParameterKey>psp_let2_1h_Sir</ParameterKey>
  130 + <Description>
  131 + Silicon rate side C
  132 + </Description>
  133 + <Units>counts/s</Units>
  134 + <RenderingHints>
  135 + <DisplayType>Spectrogram</DisplayType>
  136 + </RenderingHints>
  137 + <Particle>
  138 + <ParticleQuantity>CountRate</ParticleQuantity>
  139 + </Particle>
  140 + </Parameter>
  141 +
  142 + <Parameter>
  143 + <Name>c rate side C</Name>
  144 + <ParameterKey>psp_let2_1h_Cr</ParameterKey>
  145 + <Description>
  146 + Carbon rate side C
  147 + </Description>
  148 + <Units>counts/s</Units>
  149 + <RenderingHints>
  150 + <DisplayType>Spectrogram</DisplayType>
  151 + </RenderingHints>
  152 + <Particle>
  153 + <ParticleQuantity>CountRate</ParticleQuantity>
  154 + </Particle>
  155 + </Parameter>
  156 +
  157 + <Parameter>
  158 + <Name>n rate side C</Name>
  159 + <ParameterKey>psp_let2_1h_Nr</ParameterKey>
  160 + <Description>
  161 + Nitrogen rate side C
  162 + </Description>
  163 + <Units>counts/s</Units>
  164 + <RenderingHints>
  165 + <DisplayType>Spectrogram</DisplayType>
  166 + </RenderingHints>
  167 + <Particle>
  168 + <ParticleQuantity>CountRate</ParticleQuantity>
  169 + </Particle>
  170 + </Parameter>
  171 +
  172 + <Parameter>
  173 + <Name>ne rate side C</Name>
  174 + <ParameterKey>psp_let2_1h_Ner</ParameterKey>
  175 + <Description>
  176 + Neon rate side C
  177 + </Description>
  178 + <Units>counts/s</Units>
  179 + <RenderingHints>
  180 + <DisplayType>Spectrogram</DisplayType>
  181 + </RenderingHints>
  182 + <Particle>
  183 + <ParticleQuantity>CountRate</ParticleQuantity>
  184 + </Particle>
  185 + </Parameter>
  186 +
  187 + <Parameter>
  188 + <Name>s rate side C</Name>
  189 + <ParameterKey>psp_let2_1h_Sr</ParameterKey>
  190 + <Description>
  191 + Sulfur rate side C
  192 + </Description>
  193 + <Units>counts/s</Units>
  194 + <RenderingHints>
  195 + <DisplayType>Spectrogram</DisplayType>
  196 + </RenderingHints>
  197 + <Particle>
  198 + <ParticleQuantity>CountRate</ParticleQuantity>
  199 + </Particle>
  200 + </Parameter>
  201 +
  202 + <Parameter>
  203 + <Name>fe rate side C</Name>
  204 + <ParameterKey>psp_let2_1h_Fer</ParameterKey>
  205 + <Description>
  206 + Iron rate side C
  207 + </Description>
  208 + <Units>counts/s</Units>
  209 + <RenderingHints>
  210 + <DisplayType>Spectrogram</DisplayType>
  211 + </RenderingHints>
  212 + <Particle>
  213 + <ParticleQuantity>CountRate</ParticleQuantity>
  214 + </Particle>
  215 + </Parameter>
  216 +
  217 + <Parameter>
  218 + <Name>cr rate side C</Name>
  219 + <ParameterKey>psp_let2_1h_Crr</ParameterKey>
  220 + <Description>
  221 + Chromium rate side C
  222 + </Description>
  223 + <Units>counts/s</Units>
  224 + <RenderingHints>
  225 + <DisplayType>Spectrogram</DisplayType>
  226 + </RenderingHints>
  227 + <Particle>
  228 + <ParticleQuantity>CountRate</ParticleQuantity>
  229 + </Particle>
  230 + </Parameter>
  231 +
  232 + <Parameter>
  233 + <Name>o rate side C</Name>
  234 + <ParameterKey>psp_let2_1h_Or</ParameterKey>
  235 + <Description>
  236 + Oxygen rate side C
  237 + </Description>
  238 + <Units>counts/s</Units>
  239 + <RenderingHints>
  240 + <DisplayType>Spectrogram</DisplayType>
  241 + </RenderingHints>
  242 + <Particle>
  243 + <ParticleQuantity>CountRate</ParticleQuantity>
  244 + </Particle>
  245 + </Parameter>
  246 +
  247 + <Parameter>
  248 + <Name>ni rate side C</Name>
  249 + <ParameterKey>psp_let2_1h_Nir</ParameterKey>
  250 + <Description>
  251 + Nickel rate side C
  252 + </Description>
  253 + <Units>counts/s</Units>
  254 + <RenderingHints>
  255 + <DisplayType>Spectrogram</DisplayType>
  256 + </RenderingHints>
  257 + <Particle>
  258 + <ParticleQuantity>CountRate</ParticleQuantity>
  259 + </Particle>
  260 + </Parameter>
  261 +
  262 + <Parameter>
  263 + <Name>ca rate side C</Name>
  264 + <ParameterKey>psp_let2_1h_Car</ParameterKey>
  265 + <Description>
  266 + Calcium rate side C
  267 + </Description>
  268 + <Units>counts/s</Units>
  269 + <RenderingHints>
  270 + <DisplayType>Spectrogram</DisplayType>
  271 + </RenderingHints>
  272 + <Particle>
  273 + <ParticleQuantity>CountRate</ParticleQuantity>
  274 + </Particle>
  275 + </Parameter>
  276 +
  277 + <Parameter>
  278 + <Name>al rate side C</Name>
  279 + <ParameterKey>psp_let2_1h_Alr</ParameterKey>
  280 + <Description>
  281 + Aluminium rate side C
  282 + </Description>
  283 + <Units>counts/s</Units>
  284 + <RenderingHints>
  285 + <DisplayType>Spectrogram</DisplayType>
  286 + </RenderingHints>
  287 + <Particle>
  288 + <ParticleQuantity>CountRate</ParticleQuantity>
  289 + </Particle>
  290 + </Parameter>
  291 +
  292 + <Parameter>
  293 + <Name>mg rate side C</Name>
  294 + <ParameterKey>psp_let2_1h_Mgr</ParameterKey>
  295 + <Description>
  296 + Magnesium rate side C
  297 + </Description>
  298 + <Units>counts/s</Units>
  299 + <RenderingHints>
  300 + <DisplayType>Spectrogram</DisplayType>
  301 + </RenderingHints>
  302 + <Particle>
  303 + <ParticleQuantity>CountRate</ParticleQuantity>
  304 + </Particle>
  305 + </Parameter>
  306 +
  307 + <Parameter>
  308 + <Name>ar rate side C</Name>
  309 + <ParameterKey>psp_let2_1h_Arr</ParameterKey>
  310 + <Description>
  311 + Argon rate side C
  312 + </Description>
  313 + <Units>counts/s</Units>
  314 + <RenderingHints>
  315 + <DisplayType>Spectrogram</DisplayType>
  316 + </RenderingHints>
  317 + <Particle>
  318 + <ParticleQuantity>CountRate</ParticleQuantity>
  319 + </Particle>
  320 + </Parameter>
  321 +
  322 + <Parameter>
  323 + <Name>na rate side C</Name>
  324 + <ParameterKey>psp_let2_1h_Nar</ParameterKey>
  325 + <Description>
  326 + Sodium rate side C
  327 + </Description>
  328 + <Units>counts/s</Units>
  329 + <RenderingHints>
  330 + <DisplayType>Spectrogram</DisplayType>
  331 + </RenderingHints>
  332 + <Particle>
  333 + <ParticleQuantity>CountRate</ParticleQuantity>
  334 + </Particle>
  335 + </Parameter>
  336 +</NumericalData>
  337 +</Spase>
... ...
NumericalData/CDPP-AMDA/PSP/epiHi/psp-let2-1min.xml 0 → 100644
... ... @@ -0,0 +1,100 @@
  1 +<?xml version="1.0" encoding="UTF-8"?>
  2 +<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_3_0.xsd">
  3 + <Version>2.3.0</Version>
  4 + <NumericalData>
  5 + <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiHi/psp-let2-1min</ResourceID>
  6 + <ResourceHeader>
  7 + <ResourceName>LET2 1min</ResourceName>
  8 + <AlternateName>Low Energy Telescope 2, 1 min rate</AlternateName>
  9 + <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate>
  10 + <Description>
  11 + LET1 and LET2 are similar in design to the HET, cylinders containing a central stack of detector disks and positionally
  12 + sensitive detectors at the ends. LET1 has 1000-micron thick detector disks in the central stack, except for the end disks
  13 + which are 500 microns. At the front of the cylinder, separate from the central stack, is a 12 micron thick disk and then a
  14 + 25 micron disk. The back of the detector has the same arrangement. The front of the detector also has a thin window
  15 + (~3 micron silicon equivalent). The 12, 25, and 500 micron thick disks are all separated into five active elements in the
  16 + same way as the HET for positional determination. LET2 is similar to LET1 but does not have the end 12, 25, and 500 micron disks.
  17 + The Low-Energy Telescopes can measure protons and heavy ions from approximately
  18 + 1 MeV to greater than 20 MeV/n and electrons from about 0.5 MeV to 2 MeV.
  19 + </Description>
  20 + <Acknowledgement>
  21 + Please acknowledge the National Aeronautics and Space Administration, NASA
  22 + </Acknowledgement>
  23 + <Contact>
  24 + <PersonID>spase://SMWG/Person/David.J.McComas</PersonID>
  25 + <Role>PrincipalInvestigator</Role>
  26 + </Contact>
  27 + <Contact>
  28 + <PersonID>spase://SMWG/Person/Eric.R.Christan</PersonID>
  29 + <Role>DeputyPI</Role>
  30 + </Contact>
  31 + <InformationURL>
  32 + <Name>PSP/ISoIS Energetic Particle Data - User Guide</Name>
  33 + <URL>https://spdf.sci.gsfc.nasa.gov/pub/data/psp/isois/ISOIS_Data_Glossary.pdf</URL>
  34 + </InformationURL>
  35 + <InformationURL>
  36 + <Name>Parker Solar Probe Mission Instrument web page, JPL</Name>
  37 + <URL>http://parkersolarprobe.jhuapl.edu/Spacecraft/index.php#Instruments</URL>
  38 + </InformationURL>
  39 + </ResourceHeader>
  40 + <AccessInformation>
  41 + <RepositoryID>spase://SMWG/Repository/CNES/CDPP-AMDA</RepositoryID>
  42 + <Availability>Online</Availability>
  43 + <AccessRights>Open</AccessRights>
  44 + <AccessURL>
  45 + <Name>AMDA at CDPP</Name>
  46 + <URL>
  47 + http://amda.cdpp.eu
  48 + </URL>
  49 + </AccessURL>
  50 + <Format>Text</Format>
  51 + <Acknowledgement>
  52 + AMDA is a science analysis system provided by the Centre de Donnees de la
  53 + Physique des Plasmas (CDPP) supported by CNRS, CNES, Observatoire de Paris and
  54 + Universite Paul Sabatier, Toulouse
  55 + </Acknowledgement>
  56 + </AccessInformation>
  57 + <ProviderName>SPDF</ProviderName>
  58 + <ProviderAcknowlegment>
  59 + Please acknowledge the CDAWeb team at GSFC/SPDF.</ProviderAcknowlegment>
  60 + <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/PSP/epiHi</InstrumentID>
  61 + <MeasurementType>EnergeticParticles</MeasurementType>
  62 + <TemporalDescription>
  63 + <TimeSpan>
  64 + <StartDate>2018-09-02T00:00:12Z</StartDate>
  65 + <StopDate>2025-08-12T23:59:55Z</StopDate>
  66 + </TimeSpan>
  67 + <Cadence>PT60S</Cadence>
  68 + </TemporalDescription>
  69 + <ObservedRegion>Heliosphere.Inner</ObservedRegion>
  70 + <ObservedRegion>Sun.Corona</ObservedRegion>
  71 + <Parameter>
  72 + <Name>h+ flux side C</Name>
  73 + <ParameterKey>psp_let2_1min_Hf</ParameterKey>
  74 + <Description>
  75 + Proton flux side C
  76 + </Description>
  77 + <Units>1/cm²/sr/s/(MeV/nuc)</Units>
  78 + <RenderingHints>
  79 + <DisplayType>Spectrogram</DisplayType>
  80 + </RenderingHints>
  81 + <Particle>
  82 + <ParticleQuantity>EnergyFlux</ParticleQuantity>
  83 + </Particle>
  84 + </Parameter>
  85 + <Parameter>
  86 + <Name>he flux side C</Name>
  87 + <ParameterKey>psp_let2_1min_Hef</ParameterKey>
  88 + <Description>
  89 + Helium flux side C
  90 + </Description>
  91 + <Units>1/cm²/sr/s/(MeV/nuc)</Units>
  92 + <RenderingHints>
  93 + <DisplayType>Spectrogram</DisplayType>
  94 + </RenderingHints>
  95 + <Particle>
  96 + <ParticleQuantity>EnergyFlux</ParticleQuantity>
  97 + </Particle>
  98 + </Parameter>
  99 +</NumericalData>
  100 +</Spase>
... ...