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Searching for neutrinoless double-beta decay of $^{130}$Te with CUORE

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arxiv 1402.6072 v2 pith:DQIOBXNI submitted 2014-02-25 physics.ins-det nucl-ex

classification physics.ins-detnucl-ex
keywords betadecaycuoredouble-betamajoranamassneutrinolessanticipated
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Neutrinoless double-beta ($0\nu\beta\beta$) decay is a hypothesized lepton-number-violating process that offers the only known means of asserting the possible Majorana nature of neutrino mass. The Cryogenic Underground Observatory for Rare Events (CUORE) is an upcoming experiment designed to search for $0\nu\beta\beta$ decay of $^{130}$Te using an array of 988 TeO$_2$ crystal bolometers operated at 10 mK. The detector will contain 206 kg of $^{130}$Te and have an average energy resolution of 5 keV; the projected $0\nu\beta\beta$ decay half-life sensitivity after five years of live time is $1.6\times 10^{26}$ y at $1\sigma$ ($9.5\times10^{25}$ y at the 90% confidence level), which corresponds to an upper limit on the effective Majorana mass in the range 40--100 meV (50--130 meV). In this paper we review the experimental techniques used in CUORE as well as its current status and anticipated physics reach.

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  1. Phenomenology of $keV$ sterile neutrino in minimal extended seesaw

    hep-ph 2019-08 reject novelty 3.0 of 10

    A single keV sterile neutrino in the minimal extended seesaw with A4 flavor symmetry is scanned against 0νββ, dark matter, and leptogenesis constraints, and the normal neutrino mass ordering emerges as favored.

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