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.zenodo.json
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.zenodo.json
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{
"language": "eng",
"license": "Apache-2.0",
"title": "Noble Element Simulation Technique",
"keywords": [
"dark matter",
"microphysics",
"xenon",
"argon"
],
"creators": [
{
"orcid": "0000-0002-9334-4659",
"affiliation": "University at Albany, SUNY",
"name": "Szydagis, M."
},
{
"affiliation": "RPI",
"name": "Brown, E."
},
{
"affiliation": "University of California, Davis",
"name": "Carrara, N."
},
{
"affiliation": "University of California, Los Angeles",
"name": "Kamaha, A.C."
},
{
"affiliation": "NRNU MEPhI and ITEP",
"name": "Kozlova, E.S."
},
{
"affiliation": "University of California, Berkeley",
"name": "McKinsey, D.N."
},
{
"affiliation": "RPI",
"name": "McMichael, K."
},
{
"affiliation": "University at Albany, SUNY",
"name": "McMonigle, R."
},
{
"affiliation": "Colorado State University",
"name": "Mooney, M."
},
{
"affiliation": "Colorado State University",
"name": "Mueller, J."
},
{
"affiliation": "University of California, Davis",
"name": "Mulhearn, M."
},
{
"affiliation": "University of California, Riverside",
"name": "Murray, W."
},
{
"affiliation": "University of California, San Diego",
"name": "Ni, K."
},
{
"affiliation": "University of Michigan",
"name": "Rischbieter, G.R.C."
},
{
"affiliation": "University of California, Los Angeles",
"name": "Trengove, K."
},
{
"orcid": "0000-0001-8158-7795",
"affiliation": "Rice University",
"name": "Tunnell, C.D."
},
{
"affiliation": "University of California, Berkeley",
"name": "Velan, V."
},
{
"affiliation": "University of California, Riverside",
"name": "Westerdale, S."
},
{
"affiliation": "University of California, San Diego",
"name": "Zhong, M."
}
],
"access_right": "open",
"description": "<p>Fast C++ simulation of different particle types in liquid, gaseous, and solid xenon</p>\n\n<ul>\n\t<li>Mean scintillation light and ionization charge yields</li>\n\t<li>Variation in total quanta, and recombination fluctuations</li>\n\t<li>Dependencies on energy, electric field strength, and density</li>\n\t<li>Pulse shape models for both S1 and S2, including e-trains</li>\n\t<li>Additional tools, for calculating leakage and limits</li>\n</ul>\n\n<p>Not a complete list, please see the exhaustive README file included.</p>"
}