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Parity and the origin of neutrino mass

机译:中微子质量的奇偶校验和起源

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摘要

In the LHC era the issue of the origin and nature of neutrino mass has attained a new meaning and a renewed importance. The growing success of the Higgs-Weinberg mechanism behind the charged fermion masses paves the way for answering the question of neutrino mass. We have shown recently how the spontaneous breaking of parity in the context of the minimal left-right symmetric model allows to probe the origin of neutrino mass in complete analogy with the charged fermions masses in the Standard Model. We revisit here this issue and fill in the gaps left in our previous work. In particular we discuss a number of different mathematical approaches to the problem of disentangling the seesaw mechanism and show how a unique analytical solution emerges. Most important, we give all the possible expressions for the neutrino Dirac mass matrix for general values of light and heavy neutrino mass matrices. In practical terms what is achieved is an untangling of the seesaw mechanism with clear and precise predictions testable at hadron colliders such as LHC.
机译:在LHC时代,中微子群众的起源和性质的问题已经达到了新的含义和新的重要性。 Higgs-Weinberg机制的成功越来越成功弥补了回答中微子质量问题的方法。我们最近显示了在最小左右对称模型的上下文中的自发性破裂是如何探测中微子质量的起源在标准模型中与带电的码头完全类别。我们在这里重新审视此问题,并填写以前的工作中留下的差距。特别是我们讨论了解开跷跷板机制问题的许多不同的数学方法,并展示了如何出现独特的分析解决方案。最重要的是,我们给出了中微子Dirac质量基质的所有可能表达式,用于光和重中中核大规模基质的一般值。实际上,所取得的成就是跷跷板机制的不包含明确,精确的预测,在LHC等Holdron煤机上可测试。

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