Low-energy limits on heavy Majorana neutrino masses from the neutrinoless double-beta decay and non-unitary neutrino mixing
نویسنده
چکیده
In the type-I seesaw mechanism, both the light Majorana neutrinos (ν1, ν2, ν3) and the heavy Majorana neutrinos (N1, · · · , Nn) can mediate the neutrinoless double-beta (0νββ) decay. We point out that the contribution of νi to this 0νββ process is also dependent on the masses Mk and the mixing parameters Rek ofNk as a direct consequence of the exact seesaw relation, and the effective mass term of νi is in most cases dominant over that of Ni. We obtain a new bound |R2 ekMk| < 0.23 eV (or < 0.85 eV as a more conservative limit) at the 2σ level, which is much stronger than |R2 ekM k | < 5 × 10−8 GeV used in some literature, from current experimental constraints on the 0νββ decay. Taking the minimal type-I seesaw scenario for example, we illustrate the possibility of determining or constraining two heavy Majorana neutrino masses by using more accurate low-energy data on lepton number violation and non-unitarity of neutrino mixing. PACS number(s): 14.60.Pq, 13.10.+q, 25.30.Pt Typeset using REVTEX E-mail: [email protected]
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