论文标题

一般中微子的质谱和锯齿机制中的混合特性

General neutrino mass spectrum and mixing properties in seesaw mechanisms

论文作者

Flieger, Wojciech, Gluza, Janusz

论文摘要

中微子通过其异常小的质量在基本颗粒中脱颖而出。各种索索机制试图解释这一事实。在应用矩阵理论的见解中,我们可以以一般方式对待Seesaw机制的变体。具体而言,使用Weyl的不平等现象,我们讨论并严格证明了SeeSAW框架的条件,导致质谱恰好带有三个光中微子。我们发现,对重中微子的质量的估计值是通过忽略中微子最多通过耦合到光中微子部门的最大强度而移动的光中微子获得的质量。我们提供分析条件,允许规定五个中微子中有两个很重。对于较高维度的情况,使用逆特征值方法。特别是,对于CP不变的情况,我们表明,如果中微子扇区在忽略光线后具有有效的质量基质,即相应的质量子质体是积极的,那么大质量是由矩阵提供的,具有大元素在对角线上。最后,戴维斯 - 卡汉定理用于显示质量如何影响来自标准欧几里得基础的光中微子特征向量的旋转。关于中微子混合以及质谱特性的结果,这种有关中微子混合的一般性观察为使用矩阵分析打开了进一步中微子物理学研究的方向。

Neutrinos stand out among elementary particles through their unusually small masses. Various seesaw mechanisms attempt to explain this fact. In this work applying insights from matrix theory we are in a position to treat variants of seesaw mechanisms in a general manner. Specifically, using Weyl's inequalities we discuss and rigorously prove under which conditions the seesaw framework leads to a mass spectrum with exactly three light neutrinos. We find an estimate on the mass of heavy neutrinos to be the mass obtained by neglecting light neutrinos shifted at most by the maximal strength of the coupling to the light neutrino sector. We provide analytical conditions allowing to prescribe that precisely two out of five neutrinos are heavy. For higher-dimensional cases the inverse eigenvalue methods are used. In particular, for the CP invariant scenarios we show that if the neutrino sector has a valid mass matrix after neglecting the light ones, i.e. the respective mass submatrix is positive definite, then large masses are provided by matrices with large elements accumulated on the diagonal. Finally, the Davis-Kahan theorem is used to show how masses affect the rotation of light neutrino eigenvectors from the standard Euclidean basis. This general observation concerning neutrino mixing together with results on the mass spectrum properties opens directions for further neutrino physics studies using matrix analysis.

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