Neutrino Model in Left-Right Symmetric Linear Seesaw Augmented with $A_4$ Modular Group

Raktima Kalita, Mahadev Patgiri
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Abstract

In this work, we have implemented $A_4$ modular symmetry in the left-right symmetric linear seesaw model. Interestingly, such modular symmetry restricts the proliferation of flavon fields, and as a result, the predictibility of the model is enhanced. The fermion sector of the model comprises of quarks, leptons and a sterile fermion in each generation, while the scalar sector consists of Higgs doublets and bidoublets. We investigate numerically various Yukawa coupling co-efficients, the neutrino masses and mixing parameters in our intended model and predictions become consistent with $3\sigma$ range of current neutrino oscillation data. We also studied the non-unitarity, effects on lepton flavor violation in our model and evolution of lepton asymmetry to explain the current baryon asymmetry of the universe.
用 $A_4$ 模块组增强的左右对称线性视锯中微子模型
在这项工作中,我们在左-右对称线性跷跷板模型中实现了 $A_4$ 模块对称。有趣的是,这种模块对称性限制了黄子场的扩散,从而增强了模型的可预测性。该模型的费米子部门由夸克、轻子和每一代中的一个不育费米子组成,而标量部门则由希格斯双子和双双子组成。我们用数值方法研究了模型中的各种尤卡耦合系数、中微子质量和混合参数,预测结果与当前中微子振荡数据的3美元/西格玛元范围一致。我们还研究了模型中的非统一性、轻子味道违反效应以及轻子不对称的演化,以解释当前宇宙的重子不对称。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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