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- W2948142448 endingPage "114691" @default.
- W2948142448 startingPage "114691" @default.
- W2948142448 abstract "To quantitatively assess the impact of an eV-mass sterile neutrino on the neutrinoless double-beta ($0nu beta beta$) decays, we calculate the posterior probability distribution of the relevant effective neutrino mass $|m^prime_{ee}|$ in the (3+1)$nu$ mixing scenario, following the Bayesian statistical approach. The latest global-fit analysis of neutrino oscillation data, the cosmological bound on the sum of three active neutrino masses from {it Planck}, and the constraints from current $0nubetabeta$ decay experiments are taken into account in our calculations. Based on the resultant posterior distributions, we find that the average value of the effective neutrino mass is shifted from $overline{|m^{}_{ee}|} = 3.37times 10^{-3}~{rm eV}$ (or $7.71times 10^{-3}~{rm eV}$) in the standard 3$nu$ mixing scenario to $overline{|m^{prime}_{ee}|}=2.54times 10^{-2}~{rm eV}$ (or $2.56times 10^{-2}~{rm eV}$) in the (3+1)$nu$ mixing scenario, with the logarithmically uniform prior on the lightest neutrino mass (or on the sum of three active neutrino masses). Therefore, a null signal from the future $0nubetabeta$ decay experiment with a sensitivity to $|m^{}_{ee}| approx mathcal{O}(10^{-2}_{})~{rm eV}$ will be able to set a very stringent constraint on the sterile neutrino mass and the active-sterile mixing angle." @default.
- W2948142448 created "2019-06-14" @default.
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- W2948142448 date "2019-08-01" @default.
- W2948142448 modified "2023-10-12" @default.
- W2948142448 title "Impact of an eV-mass sterile neutrino on the neutrinoless double-beta decays: A Bayesian analysis" @default.
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- W2948142448 doi "https://doi.org/10.1016/j.nuclphysb.2019.114691" @default.
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