Implications of A4 modular symmetry on neutrino mass, mixing and leptogenesis with linear seesaw

Behera, M.K. and Mishra, S. and Singirala, S. and et al, . (2022) Implications of A4 modular symmetry on neutrino mass, mixing and leptogenesis with linear seesaw. Physics of the Dark Universe, 36. pp. 1-12. ISSN 2212-6864

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Abstract

The present work is inspired by the application of A4 modular symmetry in the linear seesaw framework, which restricts the use of multiple flavon fields. Linear seesaw is realized with six heavy SU(2)L singlet fermion superfields and a weighton in a supersymmetric framework. The non-trivial transformation of Yukawa couplings under the A4 modular symmetry helps to explore the neutrino phenomenology with a specific flavor structure of the mass matrix. We discuss the phenomena of neutrino mixing and show that the obtained mixing angles and CP violating phase in this framework are compatible with the observed 3σ range of the current oscillation data. In addition, we also investigate the non-zero CP asymmetry from the decay of lightest heavy fermion superfield to explain the preferred phenomena of baryogenesis through leptogenesis including flavor effects. © 2022 Elsevier B.V

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IITH Creators:
IITH CreatorsORCiD
Item Type: Article
Additional Information: MKB and SM want to acknowledge DST for its financial help. RM and SS would like to that University of Hyderabad for financial support through IoE project grant No. UoH/IoE/RC1/RC1-20-012. RM acknowledges the support from SERB, Government of India, through grant No. EMR/2017/001448. The computational work done at CMSD, University of Hyderabad is duly acknowledged.
Uncontrolled Keywords: A4 modular symmetry, Leptogenesis, Neutrino mass and mixing
Subjects: Others > Applied sciences
Physics
Divisions: Department of Physics
Depositing User: . LibTrainee 2021
Date Deposited: 27 Jul 2022 06:07
Last Modified: 27 Jul 2022 06:07
URI: http://raiith.iith.ac.in/id/eprint/9373
Publisher URL: https://doi.org/10.1016/j.dark.2022.101027
OA policy: https://v2.sherpa.ac.uk/id/publication/24554
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