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Shell model predictions for ¹²⁴Sn double-beta decay

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arxiv 1511.03711 v1 pith:WV7KFFR7 submitted 2015-11-11 nucl-th

Shell model predictions for ¹²⁴Sn double-beta decay

classification nucl-th
keywords betadecaymodeldouble-betashellcalculationspredictionsprocess
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Neutrinoless double-beta ($0 \nu \beta \beta$) decay is a promising beyond Standard Model process. Two-neutrino double-beta ($2 \nu \beta \beta$) decay is an associated process that is allowed by the Standard Model, and it was observed in about 10 isotopes, including decays to the excited states of the daughter. $^{124}$Sn was the first isotope whose double-beta decay modes were investigated experimentally, and despite few other recent efforts, no signal has been seen so far. Shell model calculations were able to make reliable predictions for $2 \nu \beta \beta$ decay half-lives. Here we use shell model calculations to predict the $2 \nu \beta \beta$ decay half-life of $^{124}$Sn. Our results are quite different from the existing quasiparticle random-phase approximation (QRPA) results, and we envision that they will be useful for guiding future experiments. We also present shell model nuclear matrix elements for two potentially competing mechanisms to the $0 \nu \beta \beta$ decay of $^{124}$Sn.

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    CUPID proposes a large bolometric detector array with alpha/beta discrimination to achieve a background-free search for 0νββ decay in 100Mo and probe the inverted neutrino mass hierarchy.