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arXiv:hep-ph/0504153·v2·High Energy Physics — Phenomenology

S3 x Z2 model for neutrino mass matrices

W. Grimus🇦🇹 · L. Lavoura🇵🇹

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Abstract

We propose a model for lepton mass matrices based on the seesaw mechanism, a complex scalar gauge singlet and a horizontal symmetry . In a suitable weak basis, the charged-lepton mass matrix and the neutrino Dirac mass matrix are diagonal, but the vacuum expectation value of the scalar gauge singlet renders the Majorana mass matrix of the right-handed neutrinos non-diagonal, thereby generating lepton mixing. When the symmetry is not broken in the scalar potential, the effective light-neutrino Majorana mass matrix enjoys -- interchange symmetry, thus predicting maximal atmospheric neutrino mixing together with . A partial and less predictive form of -- interchange symmetry is obtained when the symmetry is softly broken in the scalar potential. Enlarging the symmetry group by an additional discrete electron-number symmetry , a more predicitive model is obtained, which is in practice indistinguishable from a previous one based on the group .

Comments: 13 pages, 3 figures, final version for publication in JHEP

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