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Structures of the neutrino mass spectrum and of lepton mixing as results of mirror-symmetry breaking

机译:中微子质谱和Lepton混合的结构作为镜面对称断裂的结果

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摘要

The mechanism of broken mirror symmetry may be the reason behind the appearance of the observed weak-mixing matrix for leptons that has a structure involving virtually no visible regularities (flavor riddle). Special features of the Standard Model such as the particle-mass hierarchy and the neutrino spectrum deviating from the hierarchy prove here to be necessary conditions for reproducing a structure of this type. The inverse character of the neutrino spectrum and a small value of the mass m (3) are also mandatory. The smallness of the angle theta (13) is due precisely to the smallness of the mass ratios in the hierarchical lepton spectrum. The emergence of distinctions between the neutrino spectrum and the spectra of other Standard Model fermions is explained. The inverse character of the neutrino spectrum and the observed value of theta (13) make it possible to estimate the absolute values of their masses as m (1) ae m (2) ae 0.05 eV and m (3) ae 0.01 eV.
机译:破碎镜对称的机制可能是所观察到的弱混合基质的外观背后的理由,其具有涉及几乎没有可见规律(风味谜语)的结构。 标准模型的特殊特征如粒子质量层次和偏离等级结构的中微粒谱证明是再现这种类型的结构的必要条件。 中微子谱的逆特征和质量m(3)的小值也是强制性的。 角度θ(13)的小于尺寸是由于分层LEPTON光谱中的质量比的小。 解释了中微粒谱与其他标准模型码头的光谱之间的差异的出现。 中微子谱的逆特征和θ(13)的观察值使得可以估计其质量的绝对值,如M(1)AE m(2)AE 0.05eV和M(3)AE 0.01eV。

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