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Radiative generation of non-zero θ13 in MSSM with broken A4 flavor symmetry

机译:非零的 θ < / mrow> 13 在MSSM中带有损坏的 A 4 风味对称

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摘要

We study the renormalization group effects on neutrino masses and mixing in Minimal Supersymmetric Standard Model (MSSM) by considering a symmetric mass matrix at high energy scale giving rise to Tri-Bi-Maximal (TBM) type mixing. We outline a flavor symmetry model based on symmetry giving rise to the desired neutrino mass matrix at high energy scale. We take the three neutrino mass eigenvalues at high energy scale as input parameters and compute the neutrino parameters at low energy by taking into account of renormalization group effects. We observe that the correct output values of neutrino parameters at low energy are obtained only when the input mass eigenvalues are large with a very mild hierarchy of either inverted or normal type. A large inverted or normal hierarchical pattern of neutrino masses is disfavored within our framework. We also find a preference towards higher values of tan β , the ratio of vacuum expectation values (vev) of two Higgs doublets in MSSM in order to arrive at the correct low energy output. Such a model predicting large neutrino mass eigenvalues with very mild hierarchy and large tan β could have tantalizing signatures at oscillation, neutrino-less double beta decay as well as collider experiments.
机译:我们通过考虑在高能级下产生对称三重-最大(TBM)型混合的对称质量矩阵,研究最小化超对称标准模型(MSSM)中的重归化群对中微子质量和混合的影响。我们概述了基于对称性的风味对称性模型,该模型在高能级下产生了所需的中微子质量矩阵。我们以高能级的三个中微子质量特征值作为输入参数,并通过考虑归一化群效应来计算低能中微子参数。我们观察到,只有当输入质量特征值较大且具有非常平缓的倒置或正常类型时,才能获得低能量中微子参数的正确输出值。在我们的框架内,不利于中微子质量的大的倒置或正常分层模式。我们还发现偏爱较高的tanβ值,即MSSM中两个希格斯双峰的真空期望值(vev)之比,以便获得正确的低能量输出。这种模型预测的中微子质量本征值很大,层次很温和,tan tan大,在振荡,无中微子双β衰变以及对撞机实验时可能具有诱人的特征。

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