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Neutrino in standard model and beyond

机译:中微子在标准模型及超越

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After discovery of the Higgs boson at CERN the Standard Model acquired a status of the theory of the elementary particles in the electroweak range (up to about 300 GeV). What general conclusions can be inferred from the Standard Model? It looks that the Standard Model teaches us that in the framework of such general principles as local gauge symmetry, unification of weak and electromagnetic interactions and Brout-Englert-Higgs spontaneous breaking of the electroweak symmetry nature chooses the simplest possibilities. Two-component left-handed massless neutrino fields play crucial role in the determination of the charged current structure of the Standard Model. The absence of the right-handed neutrino fields in the Standard Model is the simplest, most economical possibility. In such a scenario Majorana mass term is the only possibility for neutrinos to be massive and mixed. Such mass term is generated by the lepton-number violating Weinberg effective Lagrangian. In this approach three Majorana neutrino masses are suppressed with respect to the masses of other fundamental fermions by the ratio of the electroweak scale and a scale of a lepton-number violating physics. The discovery of the neutrinoless double beta-decay and absence of transitions of flavor neutrinos into sterile states would be evidence in favor of the minimal scenario we advocate here.
机译:在CERN的HIGGS玻色子发现之后,标准模型获得了电挖掘范围(最多约300 GEV)中基本粒子理论的理论的状态。可以从标准模型推断出什么常规结论?它看起来标准模特教导我们在这种一般原则的框架中作为局部规范对称,弱和电磁相互作用的统一和布卢特-Nglert-higgs电挖掘对称性的自发性破裂选择了最简单的可能性。双组分左手无阻燃中微子领域在确定标准模型的带电电流结构中起重要作用。标准模型中缺乏右手中微子领域是最简单,最经济的可能性。在这种情况下,Makeana MassanAsom术语是中微子待巨大和混合的唯一可能性。这种大规模术语是由Lepton号产生的违反Weinberg有效拉格朗日的。在这种方法中,通过电牛尺度的比率和违反物理学的Lepton号的规模,对群众的其他基本费米氏质量抑制了三个Majorana中微子质量。中微子双β衰变的发现和味道中微子转变为无菌状态的情况将是有利于我们在此处的最小方案的证据。

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