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Neutrinos propagating in curved spacetimes

机译:中微子在弯曲的偶片上传播

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摘要

In the Dirac-Weyl equation that describes massless neutrino propagation in the minimal Standard Model, the (2 x 2 equivalence of the) gamma matrices convert Weyl spinors into spacetime tensors, and vice versa. They can thus be regarded as amalgamations of three different types of mappings, one that connects particle spinors directly forming representations to internal gauge symmetries to their spacetime counterparts that are embodied by null flags, another that translates the spacetime spinors into their corresponding tensors expressed in an orthonormal tetrad, and finally a purely tensorial transformation into the coordinate tetrad. The splitting of spinors into particle and spacetime varieties is not usually practised, but we advocate its adoption for better physical clarity, in terms of distinguishing internal and spacetime transformations, and also for understanding the scattering of neutrinos by spacetime curvature. We construct the basic infrastructure required for this task, and provide a worked example for the Schwarzschild spacetime. Our investigation also uncovers a possible under-determinacy in the flavoured Dirac-Weyl equation, which could serve as a new incision point for introducing flavour oscillation mechanisms.
机译:在描述最小标准模型中的大型中微子繁殖的Dirac-Weyl方程中,伽马矩阵(2×2等当量)将Weyl Spinors转换成时空张量,反之亦然。因此,它们可以被视为三种不同类型的映射的分散,它将直接形成表示表示的颗粒旋转器与内部仪表对称的单位对称,它们由空标志体现的另一个相同,另一个将空间旋转器转换为它们的相应张量子正式的四边形,最后将纯度转变为坐标四。通常不实践纺丝丝和时空品种的分裂,但我们倡导通过区分内部和时空转化来实现更好的身体清晰度,并且还用于通过时空曲率理解中微子的散射。我们构建此任务所需的基础架构,并为Schwarzschild时空提供了一个工作示例。我们的调查还在调味的Dirac-Weyl方程中揭示了可能的含量下的确定,其可以作为引入风味振荡机制的新切割点。

著录项

  • 来源
    《European Physical Journal Plus 》 |2017年第10期| 共21页
  • 作者

    Zhang Fan;

  • 作者单位

    Beijing Normal Univ Dept Astron Gravitat Wave &

    Cosmol Lab Beijing 100875 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学 ;
  • 关键词

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