Understanding NaI(Tl) crystal background for dark matter searches

Abstract We have developed ultra-low-background NaI(Tl) crystals to reproduce the DAMA results with the ultimate goal of achieving purity levels that are comparable to or better than those of the DAMA/LIBRA crystals. Even though the achieved background level does not approach that of DAMA/LIBRA, it...

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Main Authors: G. Adhikari, P. Adhikari, C. Ha, E. J. Jeon, N. Y. Kim, Y. D. Kim, S. Y. Kong, H. S. Lee, S. Y. Oh, J. S. Park, K. S. Park
Format: Article
Language:English
Published: SpringerOpen 2017-07-01
Series:European Physical Journal C: Particles and Fields
Online Access:http://link.springer.com/article/10.1140/epjc/s10052-017-5011-6
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spelling doaj-d0bdf40a89604ed2817241ef3c36b6362020-11-24T23:19:45ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522017-07-017771910.1140/epjc/s10052-017-5011-6Understanding NaI(Tl) crystal background for dark matter searchesG. Adhikari0P. Adhikari1C. Ha2E. J. Jeon3N. Y. Kim4Y. D. Kim5S. Y. Kong6H. S. Lee7S. Y. Oh8J. S. Park9K. S. Park10Department of Physics and Astronomy, Sejong UniversityDepartment of Physics and Astronomy, Sejong 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 Physics and Astronomy, Sejong UniversityCenter for Underground Physics, Institute for Basic Science (IBS)Department of Physics and Astronomy, Sejong UniversityCenter for Underground Physics, Institute for Basic Science (IBS)Center for Underground Physics, Institute for Basic Science (IBS)Abstract We have developed ultra-low-background NaI(Tl) crystals to reproduce the DAMA results with the ultimate goal of achieving purity levels that are comparable to or better than those of the DAMA/LIBRA crystals. Even though the achieved background level does not approach that of DAMA/LIBRA, it is crucial to have a quantitative understanding of the backgrounds. We have studied background simulations toward a deeper understanding of the backgrounds and developed background models for a 9.16-kg NaI(Tl) crystal used in the test arrangement. In this paper we describe the contributions of background sources quantitatively by performing Geant4 Monte Carlo simulations that are fitted to the measured data to quantify the unknown fractions of the background compositions. In the fitted results, the overall simulated background spectrum well describes the measured data with a 9.16-kg NaI(Tl) crystal and shows that the background sources are dominated by surface $$^{210}$$ 210 Pb and internal $$^{40}$$ 40 K in the 2–6-keV energy interval, which produce 2.4 counts/day/keV/kg (dru) and 0.5 dru, respectively.http://link.springer.com/article/10.1140/epjc/s10052-017-5011-6
collection DOAJ
language English
format Article
sources DOAJ
author G. Adhikari
P. Adhikari
C. Ha
E. J. Jeon
N. Y. Kim
Y. D. Kim
S. Y. Kong
H. S. Lee
S. Y. Oh
J. S. Park
K. S. Park
spellingShingle G. Adhikari
P. Adhikari
C. Ha
E. J. Jeon
N. Y. Kim
Y. D. Kim
S. Y. Kong
H. S. Lee
S. Y. Oh
J. S. Park
K. S. Park
Understanding NaI(Tl) crystal background for dark matter searches
European Physical Journal C: Particles and Fields
author_facet G. Adhikari
P. Adhikari
C. Ha
E. J. Jeon
N. Y. Kim
Y. D. Kim
S. Y. Kong
H. S. Lee
S. Y. Oh
J. S. Park
K. S. Park
author_sort G. Adhikari
title Understanding NaI(Tl) crystal background for dark matter searches
title_short Understanding NaI(Tl) crystal background for dark matter searches
title_full Understanding NaI(Tl) crystal background for dark matter searches
title_fullStr Understanding NaI(Tl) crystal background for dark matter searches
title_full_unstemmed Understanding NaI(Tl) crystal background for dark matter searches
title_sort understanding nai(tl) crystal background for dark matter searches
publisher SpringerOpen
series European Physical Journal C: Particles and Fields
issn 1434-6044
1434-6052
publishDate 2017-07-01
description Abstract We have developed ultra-low-background NaI(Tl) crystals to reproduce the DAMA results with the ultimate goal of achieving purity levels that are comparable to or better than those of the DAMA/LIBRA crystals. Even though the achieved background level does not approach that of DAMA/LIBRA, it is crucial to have a quantitative understanding of the backgrounds. We have studied background simulations toward a deeper understanding of the backgrounds and developed background models for a 9.16-kg NaI(Tl) crystal used in the test arrangement. In this paper we describe the contributions of background sources quantitatively by performing Geant4 Monte Carlo simulations that are fitted to the measured data to quantify the unknown fractions of the background compositions. In the fitted results, the overall simulated background spectrum well describes the measured data with a 9.16-kg NaI(Tl) crystal and shows that the background sources are dominated by surface $$^{210}$$ 210 Pb and internal $$^{40}$$ 40 K in the 2–6-keV energy interval, which produce 2.4 counts/day/keV/kg (dru) and 0.5 dru, respectively.
url http://link.springer.com/article/10.1140/epjc/s10052-017-5011-6
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