SU(3) gauge family symmetry and prediction for the lepton-flavor mixing and neutrino masses with maximal spontaneous CP violation

被引:22
|
作者
Wu, Yue-Liang [1 ]
机构
[1] Chinese Acad Sci, Inst Theoret Phys, KITPC, SKLTP, Beijing 100190, Peoples R China
基金
美国国家科学基金会;
关键词
S-3; SYMMETRY; HORIZONTAL SYMMETRY; DISCRETE SYMMETRY; LARGE THETA(13); MODEL; OSCILLATIONS; MATRICES; QUARK; BREAKING; DECAY;
D O I
10.1016/j.physletb.2012.07.020
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
A model for the lepton-flavor mixing and CP violation is proposed based on the SUF(3) gauge family symmetry and the Majorana feature of neutrinos. A consistent prediction for the lepton-flavor mixing and masses is shown to be resulted from the appropriate vacuum structure of SUF(3) gauge symmetry breaking. By choosing the SUF(3) gauge fixing condition to possess a residual Z(2) symmetry and requiring the vacuum structure of spontaneous symmetry breaking to have approximate global U(1) family symmetries, we obtain naturally the tri-bimaximal mixing matrix and largely degenerate neutrino masses in the neutrino sector and the small mixing matrix in the charged-lepton sector. With a simple ansatz that all the smallness due to the approximate global U(1) family symmetries is characterized by a single Wolfenstein parameter lambda similar or equal to 0.22, and the charged-lepton mixing matrix has a similar hierarchy structure as the CKM quark mixing matrix, we arrive at a consistent prediction for the MNSP lepton-flavor mixing with a maximal spontaneous CP violation: delta = pi/2, sin(2) theta(13) similar or equal to 1/2(lambda 2) similar or equal to 0.024 (sin(2) 2 theta(13) similar or equal to 0.094), sin(2) theta(12) similar or equal to 1/3 (1 - 2(lambda 3)) similar or equal to 0.326 and sin(2) theta(23) similar or equal to 1/2(1 - lambda(2)) similar or equal to 0.48, which agree well with the current experimental data. The CP-violating Jarlskog-invariant is obtained to be J(CP) similar or equal to 1/6 lambda(1 - lambda(2)/2 - lambda(3)) sin delta similar or equal to 0.035, which is detectable in next generation neutrino experiment. The small masses of the neutrinos and charged leptons are simply attributed to the standard seesaw mechanism. The largely degenerate neutrino masses with the normal hierarchy and inverse hierarchy are discussed and found to be at the order m(vi) similar or equal to O(lambda(2)) similar or equal to 0.04-0.06 eV with a total mass Sigma m(v) similar to 0.15 eV, which is testable in future precision astrophysics and cosmology. (C) 2012 Published by Elsevier B.V.
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页码:286 / 294
页数:9
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