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arXiv:1103.6127·v1·High Energy Physics — Phenomenology

Quark/lepton mass and mixing in S_3 invariant model and CP-violation of neutrino

Tadayuki Teshima🇯🇵 · Yoshitaka Okumura (Chubu University, Kasugai, Japan)🇯🇵

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Abstract

Weak bases of flavors (u, c), (d,s), (e, \mu), (\nu_e,\nu_\mu) are assumed as the S_3 doublet and t, b, \tau, {\nu_\tau} are the S_3 singlet and further there are assumed S_3 doublet Higgs (H_1, H_2) and S_3 singlet Higgs H_S. We suggest an S_3 invariant model in which the Yukawa interactions constructed from these S_3 doublets and singlets are S_3 invariant. In this model, we can explain the quark sector mass hierarchy, quark mixing V_{CKM} and measure of CP violation naturally. In the leptonic sector, neutrino masses are assumed to be constructed through the see-saw mechanism from the Majorana mass. The tri-bimaximal-like character of neutrino mixing V_{MNS} can be explained dynamically without any other symmetry restrictions. It is predicted that a quasi-degenerate mass spectroscopy of neutrino is favorable, and values of |V_{MNS}|_{13}, CP violation invariant measure J and the effective Majorana mass |<m>| in neutrino-less double beta decay are not so tiny.

Comments: 21 pages with 2 PostScript figures

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