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Constraints from Neutrino Oscillation Experiments on the Effective Majorana Mass in Neutrinoless Double β\beta-Decay

Abstract

We determine the possible values of the effective Majorana neutrino mass <m>=jUej2mj|< m > |= |\sum_j U_{ej}^2 m_j| in the different phenomenologically viable three and four-neutrino scenarios. The quantities UαjU_{\alpha j} (α=e,μ,τ,...\alpha = e,\mu,\tau,...) denote the elements of the neutrino mixing matrix and the Majorana neutrino masses mjm_j (j=1,2,3,...j=1,2,3,...) are ordered as m1<m2<...m_1 < m_2 < ... Assuming m1m3m_1 \ll m_3 in the three-neutrino case and m1m4m_1 \ll m_4 in the four-neutrino case, we discuss, in particular, how constraints on | | depend on the mixing angle relevant in solar neutrino oscillations and on the three mass-squared differences obtained from the analyses of the solar, atmospheric and LSND data. If neutrinoless double β\beta-decay proceeds via the mechanism involving ||, conclusions about neutrinoless double β\beta-decay can be drawn. If one of the two viable four-neutrino schemes (Scheme A) is realized in nature, || can be as large as 1 eV and neutrinoless double β\beta-decay could possibly be discovered in the near future. In this case a Majorana CP phase of the mixing matrix UU could be determined. In the other four-neutrino scheme (Scheme B) there is an upper bound on || of the order of 10210^{-2} eV. In the case of three-neutrino mixing the same is true if the neutrino mass spectrum is hierarchical, however, if there exist two quasi-degenerate neutrinos and the first neutrino has a much smaller mass, values of || as large as 0.1\sim 0.1 eV are possible.Comment: 15 pages, REVTEX, 2 figures, final version to be published in Phys. Lett.

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    Last time updated on 03/01/2020