Texture One Zero Model Based on A4 Flavor Symmetry and its Implications to Neutrinoless Double Beta Decay

Rishu Verma, Monal Kashav, A. B, Gazal Sharma, Surender Verma, B. Chauhan
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Abstract

Neutrinos are perhaps the most elusive particles in our Universe. Neutrino physics could be counted as a benchmark for various new theories in elementary particle physics and also for the better understanding of the evolution of the Universe. To complete the neutrino picture, the missing information whether it is about their mass or their nature that the neutrinos are Majorana particles could be provided by the observation of a process called neutrinoless double beta (0νββ) decay. Neutrinoless double beta decay is a hypothesised nuclear process in which two neutrons simultaneously decay into protons with no neutrino emission. In this paper we proposed a neutrino mass model based on A4 symmetry group and studied its implications to 0νββ decay. We obtained a lower limit on |Mee| for inverted hierarchy and which can be probed in 0νββ experiments like SuperNEMO and KamLAND-Zen. 
基于A4味对称的质地一零模型及其对中微子双β衰变的影响
中微子可能是我们宇宙中最难以捉摸的粒子。中微子物理学可以被视为基本粒子物理学中各种新理论的基准,也可以更好地理解宇宙的演化。为了完善中微子的图像,缺失的信息,无论是关于它们的质量还是它们的性质,中微子是马约拉纳粒子,都可以通过观察一个称为无中微子双β (0νββ)衰变的过程来提供。无中微子双β衰变是一种假设的核过程,其中两个中子同时衰变为没有中微子发射的质子。本文提出了一个基于A4对称群的中微子质量模型,并研究了它对0νββ衰变的影响。我们得到了一个倒层次的下极限,可以在SuperNEMO和KamLAND-Zen等0νββ实验中进行探测。
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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