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Radioassay of the materials for AMoRE-II experiment.

Authors :
Agrawal, A.
Alenkov, V. V.
Aryal, P.
Bae, H.
Beyer, J.
Bhandari, B.
Boiko, R. S.
Boonin, K.
Buzanov, O.
Byeon, C. R.
Chanthima, N.
Cheoun, M. K.
Choe, J. S.
Choi, S.
Choudhury, S.
Chung, J. S.
Danevich, F. A.
Djamal, M.
Drung, D.
Enss, C.
Source :
Frontiers in Physics; 2025, p1-15, 15p
Publication Year :
2025

Abstract

The AMoRE-II experiment will search for the 0 νββ decay of <superscript>100</superscript>Mo nuclei using molybdate crystal scintillators, operating at milli-Kelvin (mK) temperatures, with a total of 80 kg of <superscript>100</superscript>Mo. The background goal for the experiment is 10<superscript>–4</superscript> counts/keV/kg/year in the region of interest around the 0 νββ decay Q-value of 3,034 keV. To achieve this level, the rate of background signals arising from emissions produced by decays of radioactive impurities in the detector and shielding materials must be strictly controlled. To do this, concentrations of such impurities are measured and are controlled through materials selection and purification. In this paper, we describe the design and the construction materials used to build the AMoRE-II detector and shielding system, including active and passive shielding, the cryostat, and the detector holders and instrumentation, and we report on measurements of radioactive impurities within candidate and selected materials. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
2296424X
Database :
Complementary Index
Journal :
Frontiers in Physics
Publication Type :
Academic Journal
Accession number :
181981831
Full Text :
https://doi.org/10.3389/fphy.2024.1362209