Accès ouvert déclaré
2024
preprint
Improved limit on neutrinoless double beta decay of $^{100}$Mo from AMoRE-I
Aman Agrawal, В. В. Аленков, P. Aryal, J. Beyer, B. Bhandari, R. S. Boiko, K. Boonin, О. А. Бузанов, C. R. Byeon, N. Chanthima, Myung-Ki Cheoun, J. S. Choe, S. Choi, S. Choudhury, Jaeil Chung, F. A. Danevich, Mitra Djamal, D. Drung, C. Enss, A. Fleischmann, A. M. Gangapshev, L. Gastaldo, Yu. M. Gavrilyuk, A. M. Gezhaev, O. Gileva, V. D. Grigorieva, V. Gurentsov, C. Ha, D. H. Ha, Eunja Ha, Dong‐Choon Hwang, E. J. Jeon, J. A. Jeon, H. S. Jo, J. Kaewkhao, Chu-Shik Kang, W. G. Kang, V. V. Kazalov, Sebastian Kempf, Arshad Khan, S. Khan, D. Y. Kim, G. W. Kim, Hong Bin Kim, Ho-Jong Kim, H. J. Kim, H. L. Kim, H. S. Kim, M. B. Kim, S. C. Kim, S. K. Kim, S. R. Kim, W. T. Kim, Y. D. Kim, Y. H. Kim, K. Kirdsiri, Youngju Ko, V. Kobychev, В. Н. Корноухов, V. V. Kuzminov, Do‐Hoon Kwon, C. H. Lee, DongYeup Lee, E. K. Lee, H. J. Lee, H. S. Lee, J. Lee, J. Y. Lee, K. B. Lee, M. H. Lee, M. K. Lee, S. W. Lee, Y. C. Lee, D. S. Leonard, Hong S. Lim, B. Mailyan, E. P. Makarov, P. Nyanda, Y. Oh, S. L. Olsen, S. I. Panasenko, H. K. Park, H. S. Park, K. S. Park, S. Y. Park, O. G. Polischuk, H. Prihtiadi, S. Ra, S. S. Ratkevich, G. Rooh, M. B. Sari, J. Seo, K. M. Seo, B. Sharma, K. A. Shin, V.N. Shlegel, K. Siyeon, J. H. So, N. V. Sokur, J. K. Son, Jiwei Song, N. Srisittipokakun, V.I. Tretyak, Rahadi Wirawan, K. R. Woo, H. J. Yeon, Y. S. Yoon, Q. Yue
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Le résumé fourni par la source
AMoRE searches for the signature of neutrinoless double beta decay of $^{100}$Mo with a 100 kg sample of enriched $^{100}$Mo. Scintillating molybdate crystals coupled with a metallic magnetic calorimeter operate at milli-Kelvin temperatures to measure the energy of electrons emitted in the decay. As a demonstration of the full-scale AMoRE, we conducted AMoRE-I, a pre-experiment with 18 molybdate crystals, at the Yangyang Underground Laboratory for over two years. The exposure was 8.02 kg$\cdot$year (or 3.89 kg$_{\mathrm{^{100}Mo}}\cdot$year) and the total background rate near the Q-value was 0.025 $\pm$ 0.002 counts/keV/kg/year. We observed no indication of $0νββ$ decay and report a new lower limit of the half-life of $^{100}$Mo $0νββ$ decay as $ T^{0ν}_{1/2}>3.0\times10^{24}~\mathrm{years}$ at 90\% confidence level. The effective Majorana mass limit range is $m_{ββ}<$(210--610) meV using nuclear matrix elements estimated in the framework of different models, including the recent shell model calculations.
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Neutrino Physics ResearchParticle physics theoretical and experimental studiesDark Matter and Cosmic Phenomena