One-Zero Textures of Inverse Neutrino Mass Matrix with TM1 Variant of Trimaximal Mixing

IF 0.4 Q4 PHYSICS, PARTICLES & FIELDS Physics of Particles and Nuclei Letters Pub Date : 2024-11-22 DOI:10.1134/S1547477124701681
A. Raj,  Tapender, L. Singh, S. Verma
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Abstract

Trimaximal mixing pattern (TM1) of the neutrino mixing matrix is consistent with current neutrino oscillation data. In this work, we have investigated the phenomenology of inverse neutrino mass matrix (\(m_{\nu }^{{ - 1}}\)) with one-zero textures considering neutrino mixing matrix to be of TM1 type. There are six possible patterns of \(m_{\nu }^{{ - 1}}\) with one-zero. We have obtained the predictions for the least known neutrino sector parameters such as octant of atmospheric mixing angle, \({{\theta }_{{23}}}\), Dirac-type CP violating phase, δ, and effective Majorana neutrino mass, \({{m}_{{ee}}}\). One of the generic feature of this class of model is the existence of necessary CP violation, i.e., Dirac CP phase δ is non-zero. For maximal value of \({{\theta }_{{23}}} = 45^\circ \), the model predicts maximal CP violation. The \(0\nu \beta \beta \) decay experiments have imperative consequences for viability of one-zero texture in \(m_{\nu }^{{ - 1}}\). It will either refute a model completely or have distinguishing implications for neutrino mass ordering in a model. We have also proposed two possible scenarios in which such phenomenological conjecture may be realized using non-Abelian discrete flavor symmetry group \({{A}_{4}}\) and cyclic group \({{Z}_{3}}\).

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三轴混合 TM1 变体的反向中微子质量矩阵的一零纹理
中微子混合矩阵的三轴混合模式(TM1)与当前的中微子振荡数据是一致的。在这项工作中,我们研究了具有一零纹理的反中微子质量矩阵(\(m_{/\nu }^{{-1}}\)的现象学,认为中微子混合矩阵是TM1型的。带有一个零的 \(m_{\nu }^{ - 1}}\ 有六种可能的模式。我们已经得到了对已知中微子扇形参数的预测,如大气混合角的倍频({{\theta }_{{23}})、狄拉克型CP违反相位(δ)和有效马约拉纳中微子质量(\({{m}_{ee}}})。这类模型的一般特征之一是存在必要的CP违反,即狄拉克CP相位δ不为零。对于\({{\theta }_{{23}}} = 45^\circ \)的最大值,模型预言了最大的CP违反。(0\nu\beta\beta\)衰变实验对于\(m_{\nu }^{ - 1}}\)中一零纹理的可行性有着至关重要的影响。它要么会彻底驳斥一个模型,要么会对模型中的中微子质量排序产生显著影响。我们还提出了使用非阿贝尔离散味道对称组\({{A}_{4}}\)和循环组\({{Z}_{3}}\)来实现这种现象学猜想的两种可能方案。
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来源期刊
Physics of Particles and Nuclei Letters
Physics of Particles and Nuclei Letters PHYSICS, PARTICLES & FIELDS-
CiteScore
0.80
自引率
20.00%
发文量
108
期刊介绍: The journal Physics of Particles and Nuclei Letters, brief name Particles and Nuclei Letters, publishes the articles with results of the original theoretical, experimental, scientific-technical, methodological and applied research. Subject matter of articles covers: theoretical physics, elementary particle physics, relativistic nuclear physics, nuclear physics and related problems in other branches of physics, neutron physics, condensed matter physics, physics and engineering at low temperatures, physics and engineering of accelerators, physical experimental instruments and methods, physical computation experiments, applied research in these branches of physics and radiology, ecology and nuclear medicine.
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