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records: added example record to test displaying container_images
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nancyhamdan committed Aug 22, 2023
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[
{
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"Collision"
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{
"description": "Running CMS analysis code using Docker",
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},
{
"description": "How to install the CMS Virtual Machine",
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},
{
"description": "Getting started with CMS open data",
"url": "/docs/cms-getting-started-2015"
}
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{
"description": "The Data Quality Monitoring Software for the CMS experiment at the LHC: past, present and future",
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}
]
}
},
{
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{
"description": "Validated runs, full validation",
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{
"description": "Validated runs, muons only",
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"CMS-Primary-Datasets"
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"description": "<p>Events stored in this primary dataset were selected because of the presence of one energetic photon, or one photon and high missing transverse momentum.</p><p><strong>Data taking / HLT</strong><br/>The collision data were assigned to different RAW datasets using the following <a href=\"/record/23900\">HLT configuration</a>.</p><p><strong>Data processing / RECO</strong><br/>This primary AOD dataset was processed from the RAW dataset by the following step: <br/>Step: RECO<br/>Release: CMSSW_7_6_3<br/>Global tag: 76X_dataRun2_v15\n <br/><a href=\"/record/24002\">Configuration file for RECO step reco_2015D_SinglePhoton</a>\n </p><p><strong>HLT trigger paths</strong><br/>The possible HLT trigger paths in this dataset are:<br/><a href=\"/search?q=HLT_Photon120_R9Id90_HE10_Iso40_EBOnly_PFMET40\">HLT_Photon120_R9Id90_HE10_Iso40_EBOnly_PFMET40</a><br/><a href=\"/search?q=HLT_Photon120_R9Id90_HE10_Iso40_EBOnly_VBF\">HLT_Photon120_R9Id90_HE10_Iso40_EBOnly_VBF</a><br/><a href=\"/search?q=HLT_Photon120_R9Id90_HE10_IsoM\">HLT_Photon120_R9Id90_HE10_IsoM</a><br/><a href=\"/search?q=HLT_Photon120\">HLT_Photon120</a><br/><a href=\"/search?q=HLT_Photon135_PFMET100_JetIdCleaned\">HLT_Photon135_PFMET100_JetIdCleaned</a><br/><a href=\"/search?q=HLT_Photon135_PFMET100\">HLT_Photon135_PFMET100</a><br/><a href=\"/search?q=HLT_Photon165_HE10\">HLT_Photon165_HE10</a><br/><a href=\"/search?q=HLT_Photon165_R9Id90_HE10_IsoM\">HLT_Photon165_R9Id90_HE10_IsoM</a><br/><a href=\"/search?q=HLT_Photon175\">HLT_Photon175</a><br/><a href=\"/search?q=HLT_Photon22_R9Id90_HE10_Iso40_EBOnly_PFMET40\">HLT_Photon22_R9Id90_HE10_Iso40_EBOnly_PFMET40</a><br/><a href=\"/search?q=HLT_Photon22_R9Id90_HE10_Iso40_EBOnly_VBF\">HLT_Photon22_R9Id90_HE10_Iso40_EBOnly_VBF</a><br/><a href=\"/search?q=HLT_Photon22_R9Id90_HE10_IsoM\">HLT_Photon22_R9Id90_HE10_IsoM</a><br/><a href=\"/search?q=HLT_Photon22\">HLT_Photon22</a><br/><a href=\"/search?q=HLT_Photon250_NoHE\">HLT_Photon250_NoHE</a><br/><a href=\"/search?q=HLT_Photon300_NoHE\">HLT_Photon300_NoHE</a><br/><a href=\"/search?q=HLT_Photon30_R9Id90_HE10_IsoM\">HLT_Photon30_R9Id90_HE10_IsoM</a><br/><a href=\"/search?q=HLT_Photon30\">HLT_Photon30</a><br/><a href=\"/search?q=HLT_Photon36_R9Id90_HE10_Iso40_EBOnly_PFMET40\">HLT_Photon36_R9Id90_HE10_Iso40_EBOnly_PFMET40</a><br/><a href=\"/search?q=HLT_Photon36_R9Id90_HE10_Iso40_EBOnly_VBF\">HLT_Photon36_R9Id90_HE10_Iso40_EBOnly_VBF</a><br/><a href=\"/search?q=HLT_Photon36_R9Id90_HE10_IsoM\">HLT_Photon36_R9Id90_HE10_IsoM</a><br/><a href=\"/search?q=HLT_Photon36\">HLT_Photon36</a><br/><a href=\"/search?q=HLT_Photon500\">HLT_Photon500</a><br/><a href=\"/search?q=HLT_Photon50_R9Id90_HE10_Iso40_EBOnly_PFMET40\">HLT_Photon50_R9Id90_HE10_Iso40_EBOnly_PFMET40</a><br/><a href=\"/search?q=HLT_Photon50_R9Id90_HE10_Iso40_EBOnly_VBF\">HLT_Photon50_R9Id90_HE10_Iso40_EBOnly_VBF</a><br/><a href=\"/search?q=HLT_Photon50_R9Id90_HE10_IsoM\">HLT_Photon50_R9Id90_HE10_IsoM</a><br/><a href=\"/search?q=HLT_Photon50\">HLT_Photon50</a><br/><a href=\"/search?q=HLT_Photon600\">HLT_Photon600</a><br/><a href=\"/search?q=HLT_Photon75_R9Id90_HE10_Iso40_EBOnly_PFMET40\">HLT_Photon75_R9Id90_HE10_Iso40_EBOnly_PFMET40</a><br/><a href=\"/search?q=HLT_Photon75_R9Id90_HE10_Iso40_EBOnly_VBF\">HLT_Photon75_R9Id90_HE10_Iso40_EBOnly_VBF</a><br/><a href=\"/search?q=HLT_Photon75_R9Id90_HE10_IsoM\">HLT_Photon75_R9Id90_HE10_IsoM</a><br/><a href=\"/search?q=HLT_Photon75\">HLT_Photon75</a><br/><a href=\"/search?q=HLT_Photon90_CaloIdL_PFHT500\">HLT_Photon90_CaloIdL_PFHT500</a><br/><a href=\"/search?q=HLT_Photon90_CaloIdL_PFHT600\">HLT_Photon90_CaloIdL_PFHT600</a><br/><a href=\"/search?q=HLT_Photon90_R9Id90_HE10_Iso40_EBOnly_PFMET40\">HLT_Photon90_R9Id90_HE10_Iso40_EBOnly_PFMET40</a><br/><a href=\"/search?q=HLT_Photon90_R9Id90_HE10_Iso40_EBOnly_VBF\">HLT_Photon90_R9Id90_HE10_Iso40_EBOnly_VBF</a><br/><a href=\"/search?q=HLT_Photon90_R9Id90_HE10_IsoM\">HLT_Photon90_R9Id90_HE10_IsoM</a><br/><a href=\"/search?q=HLT_Photon90\">HLT_Photon90</a></p>"
},
"note": {
"description": "The list of validated runs, which must be applied to all analyses, can be found in",
"links": [
{
"recid": "14210"
}
]
},
"publisher": "CERN Open Data Portal",
"recid": "28101",
"relations": [
{
"description": "The corresponding MINIAOD dataset:",
"recid": "24118",
"type": "isSiblingOf"
}
],
"run_period": [
"Run2015D"
],
"system_details": {
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{
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"registry": "docker"
},
{
"name": "gitlab-registry.cern.ch/cms-cloud/cmssw-docker-opendata/cmssw_7_6_7-slc6_amd64_gcc493",
"registry": "gitlab"
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],
"global_tag": "76X_dataRun2_16Dec2015_v0",
"release": "CMSSW_7_6_7"
},
"title": "/SinglePhoton/Run2015D-16Dec2015-v1/AOD",
"title_additional": "SinglePhoton primary dataset in AOD format from RunD of 2015 (/SinglePhoton/Run2015D-16Dec2015-v1/AOD)",
"type": {
"primary": "Dataset",
"secondary": [
"Collision"
]
},
"usage": {
"description": "You can access these data through the CMS Open Data container or the CMS Virtual Machine. See the instructions for setting up one of the two alternative environments and getting started in",
"links": [
{
"description": "Running CMS analysis code using Docker",
"url": "/docs/cms-guide-docker"
},
{
"description": "How to install the CMS Virtual Machine",
"url": "/docs/cms-virtual-machine-2015"
},
{
"description": "Getting started with CMS open data",
"url": "/docs/cms-getting-started-2015"
}
]
},
"validation": {
"description": "During data taking all the runs recorded by CMS are certified as good for physics analysis if all subdetectors, trigger, lumi and physics objects (tracking, electron, muon, photon, jet and MET) show the expected performance. Certification is based first on the offline shifters evaluation and later on the feedback provided by detector and Physics Object Group experts. Based on the above information, which is stored in a specific database called Run Registry, the Data Quality Monitoring group verifies the consistency of the certification and prepares a json file of certified runs to be used for physics analysis. For each reprocessing of the raw data, the above mentioned steps are repeated. For more information see:",
"links": [
{
"description": "The Data Quality Monitoring Software for the CMS experiment at the LHC: past, present and future",
"url": "https://www.epj-conferences.org/articles/epjconf/pdf/2019/19/epjconf_chep2018_02003.pdf"
}
]
}
}
]

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