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arXiv · hep-ph/0509094

Flavor Mass and Mixing and S_3 Symmetry -- An S_3 Invariant Model Reasonable to All --

Abstract

We assume that weak bases of flavors (u, c)_{L,R}, (d,s)_{L,R}, (e, μ) _{L,R}, (ν_e, ν_μ)_{L,R} are the S_3 doublet and t_{L,R}, b_{L,R}, τ_{L,R}, {ν_τ}_{L,R} are the S_3 singlet and further there are S_3 doublet Higgs (H_D^1, H_D^2) and S_3 singlet Higgs H_S. We suggest an S_3 invariant Yukawa interaction, in which masses caused from the interaction of S_3 singlet flavors and Higgs is very large and masses caused from interactions of S_3 doublet flavors and Higgs are very small, and the vacuum expectation value <|H_D^1|>_0 is rather small compared to the <|H_D^2|>_0. In this model, we can explain the quark sector mass hierarchy, flavor mixing V_{CKM} and measure of CP violation naturally. The leptonic sector mass hierarchy and flavor mixing described by V_{MNS} having one-maximal and one-large mixing character can also be explained naturally with no other symmetry restriction. In our model, an origin of Cabibbo angle is the ratio λ=<|H_D^1|>_0 /<|H_D^2|>_0 and an origin of CP violation is the phase of H_D^1.

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BibTeXRIS

T. Teshima. 2005-09-10. Flavor Mass and Mixing and S_3 Symmetry -- An S_3 Invariant Model Reasonable to All --. https://doi.org/10.1103/physrevd.73.045019

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