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arXiv:1108.4512·v2·High Energy Physics — Phenomenology

A Model of Fermion Masses and Flavor Mixings with Family Symmetry

Wei-Min Yang🇨🇳 · Qi Wang🇨🇳 · Jin-Jin Zhong🇨🇳

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Abstract

The family symmetry is proposed to solve flavor problems about fermion masses and flavor mixings. It's breaking is implemented by some flavon fields at the high-energy scale. In addition a discrete group is introduced to generate tiny neutrino masses, which is broken by a real singlet scalar field at the middle-energy scale. The low-energy effective theory is elegantly obtained after all of super-heavy fermions are integrated out and decoupling. All the fermion mass matrices are regularly characterized by four fundamental matrices and thirteen parameters. The model can perfectly fit and account for all the current experimental data about the fermion masses and flavor mixings, in particular, it finely predicts the first generation quark masses and the values of and in neutrino physics. All of the results are promising to be tested in the future experiments.

Comments: 14 pages, 1 figure, to make a few of corrections to the old version. arXiv admin note: substantial text overlap with arXiv:1011.4573

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