Investigating the Hybrid Textures of Neutrino Mass Matrix for Near Maximal Atmospheric Neutrino Mixing

We have studied that the implication of a large value of the effective Majorana neutrino mass in case of neutrino mass matrices has either two equal elements and one zero element (popularly known as hybrid texture) or two equal cofactors and one zero minor (popularly known as inverse hybrid texture)...

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Main Author: Madan Singh
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2018/5806743
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author Madan Singh
author_facet Madan Singh
author_sort Madan Singh
collection DOAJ
description We have studied that the implication of a large value of the effective Majorana neutrino mass in case of neutrino mass matrices has either two equal elements and one zero element (popularly known as hybrid texture) or two equal cofactors and one zero minor (popularly known as inverse hybrid texture) in the flavor basis. In each of these cases, four out of sixty phenomenologically possible patterns predict near maximal atmospheric neutrino mixing angle in the limit of large effective Majorana neutrino mass. This feature remains irrespective of the experimental data on solar and reactor mixing angles. In addition, we have also performed the comparative study of all the viable cases of hybrid and inverse hybrid textures at 3σ CL.
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spelling doaj-art-4f34b82831b847a0865d1b56ceacb8c22025-02-03T00:59:15ZengWileyAdvances in High Energy Physics1687-73571687-73652018-01-01201810.1155/2018/58067435806743Investigating the Hybrid Textures of Neutrino Mass Matrix for Near Maximal Atmospheric Neutrino MixingMadan Singh0Department of Physics, National Institute of Technology, Kurukshetra, Haryana 136119, IndiaWe have studied that the implication of a large value of the effective Majorana neutrino mass in case of neutrino mass matrices has either two equal elements and one zero element (popularly known as hybrid texture) or two equal cofactors and one zero minor (popularly known as inverse hybrid texture) in the flavor basis. In each of these cases, four out of sixty phenomenologically possible patterns predict near maximal atmospheric neutrino mixing angle in the limit of large effective Majorana neutrino mass. This feature remains irrespective of the experimental data on solar and reactor mixing angles. In addition, we have also performed the comparative study of all the viable cases of hybrid and inverse hybrid textures at 3σ CL.http://dx.doi.org/10.1155/2018/5806743
spellingShingle Madan Singh
Investigating the Hybrid Textures of Neutrino Mass Matrix for Near Maximal Atmospheric Neutrino Mixing
Advances in High Energy Physics
title Investigating the Hybrid Textures of Neutrino Mass Matrix for Near Maximal Atmospheric Neutrino Mixing
title_full Investigating the Hybrid Textures of Neutrino Mass Matrix for Near Maximal Atmospheric Neutrino Mixing
title_fullStr Investigating the Hybrid Textures of Neutrino Mass Matrix for Near Maximal Atmospheric Neutrino Mixing
title_full_unstemmed Investigating the Hybrid Textures of Neutrino Mass Matrix for Near Maximal Atmospheric Neutrino Mixing
title_short Investigating the Hybrid Textures of Neutrino Mass Matrix for Near Maximal Atmospheric Neutrino Mixing
title_sort investigating the hybrid textures of neutrino mass matrix for near maximal atmospheric neutrino mixing
url http://dx.doi.org/10.1155/2018/5806743
work_keys_str_mv AT madansingh investigatingthehybridtexturesofneutrinomassmatrixfornearmaximalatmosphericneutrinomixing