Limits on interactions between weakly interacting massive particles and nucleons obtained with NaI(Tl) crystal detectors
Abstract Limits on the cross section for weakly interacting massive particles (WIMPs) elastic scattering on nuclei in NaI(Tl) detectors at the Yangyang Underground Laboratory are obtained from a 2967.4 kg·day data exposure. The nuclei recoiling from the scattering process are identified by the pulse...
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doaj-592466f10ee04165bbc18285f0601c502020-11-25T02:24:20ZengSpringerOpenJournal of High Energy Physics1029-84792019-03-012019311410.1007/JHEP03(2019)194Limits on interactions between weakly interacting massive particles and nucleons obtained with NaI(Tl) crystal detectorsThe KIMS collaborationK. W. Kim0G. Adhikari1P. Adhikari2S. Choi3C. Ha4I. S. Hahn5E. J. Jeon6H. W. Joo7W. G. Kang8H. J. Kim9N. Y. Kim10S. K. Kim11Y. D. Kim12Y. H. Kim13Y. J. Ko14H. S. Lee15J. S. Lee16J. Y. Lee17M. H. Lee18D. S. Leonard19S. L. Olsen20B. J. Park21H. K. Park22H. S. Park23K. S. Park24Center for Underground Physics, Institute for Basic Science (IBS)Department of Physics, Sejong UniversityDepartment of Physics, Sejong UniversityDepartment of Physics and Astronomy, Seoul National UniversityCenter for Underground Physics, Institute for Basic Science (IBS)Department of Science Education, Ewha Womans UniversityCenter for Underground Physics, Institute for Basic Science (IBS)Department of Physics and Astronomy, Seoul National UniversityCenter for Underground Physics, Institute for Basic Science (IBS)Department of Physics, Kyungpook National UniversityCenter for Underground Physics, Institute for Basic Science (IBS)Department of Physics and Astronomy, Seoul National UniversityCenter for Underground Physics, Institute for Basic Science (IBS)Center for Underground Physics, Institute for Basic Science (IBS)Center for Underground Physics, Institute for Basic Science (IBS)Center for Underground Physics, Institute for Basic Science (IBS)Center for Underground Physics, Institute for Basic Science (IBS)Department of Physics, Kyungpook National UniversityCenter for Underground Physics, Institute for Basic Science (IBS)Center for Underground Physics, Institute for Basic Science (IBS)Center for Underground Physics, Institute for Basic Science (IBS)Center for Underground Physics, Institute for Basic Science (IBS)Department of Accelerator Science, Korea UniversityKorea Research Institute of Standards and ScienceCenter for Underground Physics, Institute for Basic Science (IBS)Abstract Limits on the cross section for weakly interacting massive particles (WIMPs) elastic scattering on nuclei in NaI(Tl) detectors at the Yangyang Underground Laboratory are obtained from a 2967.4 kg·day data exposure. The nuclei recoiling from the scattering process are identified by the pulse shape of the scintillation light signals that they produce. The data are consistent with a no nuclear-recoil hypothesis, and WIMP-mass-dependent 90% confidence-level upper-limits are set on WIMP-nuclei elastic scattering cross sections. These limits partially exclude the DAMA/LIBRA allowed region for WIMP-sodium interactions with the same NaI(Tl) target material. The 90% confidence level upper limit on the WIMP-nucleon spin-independent cross section is 3.26×10−4 pb for a WIMP mass of 10 GeV/c2.http://link.springer.com/article/10.1007/JHEP03(2019)194Dark matterDark Matter and Double Beta Decay (experiments) |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
The KIMS collaboration K. W. Kim G. Adhikari P. Adhikari S. Choi C. Ha I. S. Hahn E. J. Jeon H. W. Joo W. G. Kang H. J. Kim N. Y. Kim S. K. Kim Y. D. Kim Y. H. Kim Y. J. Ko H. S. Lee J. S. Lee J. Y. Lee M. H. Lee D. S. Leonard S. L. Olsen B. J. Park H. K. Park H. S. Park K. S. Park |
spellingShingle |
The KIMS collaboration K. W. Kim G. Adhikari P. Adhikari S. Choi C. Ha I. S. Hahn E. J. Jeon H. W. Joo W. G. Kang H. J. Kim N. Y. Kim S. K. Kim Y. D. Kim Y. H. Kim Y. J. Ko H. S. Lee J. S. Lee J. Y. Lee M. H. Lee D. S. Leonard S. L. Olsen B. J. Park H. K. Park H. S. Park K. S. Park Limits on interactions between weakly interacting massive particles and nucleons obtained with NaI(Tl) crystal detectors Journal of High Energy Physics Dark matter Dark Matter and Double Beta Decay (experiments) |
author_facet |
The KIMS collaboration K. W. Kim G. Adhikari P. Adhikari S. Choi C. Ha I. S. Hahn E. J. Jeon H. W. Joo W. G. Kang H. J. Kim N. Y. Kim S. K. Kim Y. D. Kim Y. H. Kim Y. J. Ko H. S. Lee J. S. Lee J. Y. Lee M. H. Lee D. S. Leonard S. L. Olsen B. J. Park H. K. Park H. S. Park K. S. Park |
author_sort |
The KIMS collaboration |
title |
Limits on interactions between weakly interacting massive particles and nucleons obtained with NaI(Tl) crystal detectors |
title_short |
Limits on interactions between weakly interacting massive particles and nucleons obtained with NaI(Tl) crystal detectors |
title_full |
Limits on interactions between weakly interacting massive particles and nucleons obtained with NaI(Tl) crystal detectors |
title_fullStr |
Limits on interactions between weakly interacting massive particles and nucleons obtained with NaI(Tl) crystal detectors |
title_full_unstemmed |
Limits on interactions between weakly interacting massive particles and nucleons obtained with NaI(Tl) crystal detectors |
title_sort |
limits on interactions between weakly interacting massive particles and nucleons obtained with nai(tl) crystal detectors |
publisher |
SpringerOpen |
series |
Journal of High Energy Physics |
issn |
1029-8479 |
publishDate |
2019-03-01 |
description |
Abstract Limits on the cross section for weakly interacting massive particles (WIMPs) elastic scattering on nuclei in NaI(Tl) detectors at the Yangyang Underground Laboratory are obtained from a 2967.4 kg·day data exposure. The nuclei recoiling from the scattering process are identified by the pulse shape of the scintillation light signals that they produce. The data are consistent with a no nuclear-recoil hypothesis, and WIMP-mass-dependent 90% confidence-level upper-limits are set on WIMP-nuclei elastic scattering cross sections. These limits partially exclude the DAMA/LIBRA allowed region for WIMP-sodium interactions with the same NaI(Tl) target material. The 90% confidence level upper limit on the WIMP-nucleon spin-independent cross section is 3.26×10−4 pb for a WIMP mass of 10 GeV/c2. |
topic |
Dark matter Dark Matter and Double Beta Decay (experiments) |
url |
http://link.springer.com/article/10.1007/JHEP03(2019)194 |
work_keys_str_mv |
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