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Discrete symmetries for electroweak natural type-I seesaw mechanism

机译:电弱自然I型跷跷板机制的离散对称性

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The naturalness of electroweak scale in the models of type-I seesaw mechanism with O ( 1 ) Yukawa couplings requires TeV scale masses for the fermion singlets. In this case, the tiny neutrino masses have to arise from the cancellations within the seesaw formula which are arranged by fine-tuned correlations between the Yukawa couplings and the masses of fermion singlets. We motivate such correlations through the framework of discrete symmetries. In the case of three Majorana fermion singlets, it is shown that the exact cancellation arranged by the discrete symmetries in seesaw formula necessarily leads to two mass degenerate fermion singlets. The remaining fermion singlet decouples completely from the standard model. We provide two candidate models based on the groups A 4 and Σ ( 81 ) and discuss the generic perturbations to this approach which can lead to the viable neutrino masses.
机译:具有O(1)Yukawa联轴器的I型跷跷板机构模型中电弱标度的自然性要求费米标度为费米子单重态。在这种情况下,微小的中微子质量必须由跷跷板公式中的抵消引起,这些抵消是由汤川耦合和费米子单重态之间的微调相关性安排的。我们通过离散对称的框架来激发这种相关性。在三个马里亚纳邦费米子单重态的情况下,证明了由跷跷板公式中的离散对称性安排的精确抵消必然导致两个质量简并的费米子单重态。其余的费米单线态与标准模型完全脱钩。我们基于A 4和Σ(81)组提供了两个候选模型,并讨论了这种方法的一般扰动,这种扰动会导致中微子的生存。

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