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- W2029693483 abstract "We present variants of the singlet-Majoron model with the seesaw mechanism effective at the weak scale that accommodate the recently reported 17-keV neutrino (${ensuremath{nu}}_{17}$) naturally. First, we show that within the minimal model, by assuming an unbroken global ${l}_{e}ensuremath{-}{l}_{ensuremath{mu}}+{l}_{ensuremath{tau}}$ symmetry (${l}_{i}ensuremath{equiv}imathrm{th}$ lepton number), ${ensuremath{nu}}_{17}$ can be identified as a Dirac particle composed of ${ensuremath{nu}}_{ensuremath{tau}}$ and ${overline{ensuremath{nu}}}_{ensuremath{mu}}$. It is then shown that, with the same spectrum, if the ${l}_{e}ensuremath{-}{l}_{ensuremath{mu}}+{l}_{ensuremath{tau}}$ symmetry is broken spontaneously below the weak scale, ${ensuremath{nu}}_{e}ensuremath{-}{ensuremath{nu}}_{s}$ (${ensuremath{nu}}_{s}$ stands for sterile neutrino) oscillations can account for the solar-neutrino deficit via the Mikheyev-Smirnov-Wolfenstein (MSW) mechanism. We also derive a recently proposed mass matrix for the 17-keV neutrino, which features ${ensuremath{nu}}_{e}ensuremath{-}{ensuremath{nu}}_{s}$ MSW oscillations, within the context of the seesaw model. All known constraints from cosmology and astrophysics, including the supernova constraint on the mass of ${ensuremath{nu}}_{17}$, are satisfied in these variants." @default.
- W2029693483 created "2016-06-24" @default.
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- W2029693483 date "1992-07-01" @default.
- W2029693483 modified "2023-09-25" @default.
- W2029693483 title "Weak-scale seesaw model for the 17-keV neutrino" @default.
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- W2029693483 doi "https://doi.org/10.1103/physrevd.46.374" @default.
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