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arXiv · 1805.10031

Importance of generalized $\mu\tau$ symmetry and its CP extension on neutrino mixing and leptogenesis

Abstract

Within the framework of residual symmetry, two $\mathbb{Z}_2$ type associate $\mu\tau$ interchange symmetries robustly constrain the Dirac CP phase $\delta$ in a model independent way. Both of them predict simultaneous maximality of $\delta$ and the atmospheric mixing angle $\theta_{23}$. We show how these well known correlations will be changed if we generalize the $\mu\tau$ interchange symmetry to a $\mu\tau$ mixing symmetry. In particular, we show that the stringent condition of simultaneous maximality could be relaxed even with a very small departure from the exact $\mu\tau$ interchange. In addition, the present neutrino data on $\delta$ and $\theta_{23}$ can be explained better by the mixing symmetry. After discussing the impact of the $\mu\tau$ mixing in some realistic neutrino mass models, we show how the proposed mixing could be realized with two simultaneous CP transformations which also lead to novel and testable correlations between $\delta$ and the mixing angles $\theta_{ij}$. Next we discuss in particular, the `three flavour regime' of leptogenesis within the CP extended framework and show, unlike the ordinary CP extended $\mu\tau$ interchange symmetry, a resonant leptogenesis is possible due the generalization of $\mu\tau$ interchange to the $\mu\tau$ mixing and the resulting baryon asymmetry always requires a nonmaximal $\theta_{23}$ owing to the fact that the baryon to photon ratio $\eta_B$ vanishes in the exact limit of $\theta_{23}=\pi/4$. This is one of the robust predictions of this framework. The CP extended $\mu\tau$ mixing is also a novel example of a low energy effective model that provides an important insight to the off-diagonal terms of the flavour coupling matrix which have usually been neglected in literature to compute the final baryon asymmetry, in particular in the models with flavour symmetries.

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Rome Samanta, Roopam Sinha, Ambar Ghosal. 2018-05-25. Importance of generalized $\mu\tau$ symmetry and its CP extension on neutrino mixing and leptogenesis. https://doi.org/10.1007/jhep10(2019)057

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