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Shell model studies of the ¹³⁰Te neutrinoless double-beta decay

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arxiv 1411.4313 v1 pith:4QOQTAKU submitted 2014-11-16 nucl-th

Shell model studies of the ¹³⁰Te neutrinoless double-beta decay

classification nucl-th
keywords betadecaymatrixnuclearelementsdouble-betaexchangehamiltonian
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Most uncertainties regarding the theoretical study of the neutrinoless double-beta decay are related to the accuracy of the nuclear matrix elements that appear in the expressions of the lifetimes. We calculate the nuclear matrix elements for the $0\nu\beta\beta$ decay of $^{130}Te$ in a shell model approach, using a recently proposed effective Hamiltonian. To ensure the reliability of the results, we investigate this Hamiltonian by performing calculations of spectroscopic quantities and comparing them to the latest experimental data available, and we analyze the $2\nu\beta\beta$ and the $0\nu\beta\beta$ decay nuclear matrix elements of $^{136}$Xe. Finally, we report new nuclear matrix for the $^{130}$Te considering the light neutrino exchange and heavy neutrino exchange mechanisms, alongside with an overview of some recent values reported in the literature.

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  1. CUPID pre-CDR

    physics.ins-det 2019-07 unverdicted novelty 4.0

    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.