Inference of neutrino nature and Majorana CP phases from 0νββ decays with inverted mass ordering

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Abstract

Whether the neutrino mass ordering is normal or inverted remains an experimentally open issue in neutrino physics. The knowledge of neutrino mass ordering has great importance for neutrinoless double-beta (0 νββ) decay experiments, which can establish the nature of massive neutrinos, i.e., whether they are Dirac or Majorana fermions. Recently, the KamLAND-Zen 800 measurement has reached for the first time the parameter space of the inverted ordering with a vanishing lightest neutrino mass. By assuming the inverted ordering, we attempt to derive the physical information of the neutrino nature and Majorana CP phases from a negative or positive observation of 0 νββ decays in the near future. Moreover, the possibility of extracting the nuclear matrix element in the case of a positive observation is also examined.To avoid the ambiguity from unknown priors of neutrino masses, we adopt the maximum likelihood method instead of the Bayesian approach usually considered in previous works.

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Huang, G. yuan, & Nath, N. (2022). Inference of neutrino nature and Majorana CP phases from 0νββ decays with inverted mass ordering. European Physical Journal C, 82(9). https://doi.org/10.1140/epjc/s10052-022-10811-1

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