Lepton flavor model with modular \(A_4\) symmetry in large volume limit

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Publication:820427

DOI10.1016/J.PHYSLETB.2020.135956zbMATH Open1472.81283arXiv2009.12120OpenAlexW3088460698MaRDI QIDQ820427

Author name not available (Why is that?)

Publication date: 27 September 2021

Published in: (Search for Journal in Brave)

Abstract: We consider the modular symmetry associated with the compactification of extra dimensions as the flavor symmetry on lepton sector. Especially, we propose a model based on the modular A4 symmetry with three right-handed neutrinos and a gauge singlet Higgs, which works well in the so-called large volume limit of the extra dimensions, i.e., mboxImauoinfty for a modulus au. The right-handed neutrinos are introduced to realize the seesaw mechanism for tiny neutrino masses observed in oscillation experiments. The vacuum expectation value of the singlet Higgs gives the Majorana masses for right-handed neutrinos and the mu-term for Higgs fields. The model can explain the observed masses and mixing angles of neutrinos successfully. We find that one of the mixing angles should be in the range sin2heta23ge0.58. Importantly, the CP violating phases of neutrinos are predicted in the two restricted regions. One is that the Dirac phase is deltamCPsimeq0.5pi and the Majorana phases are alpha21simeq0 and alpha31simeqpi. The other is deltamCPsimeq+0.5pi, alpha21simeq2pi and alpha31simeqpi. The effective neutrino mass in the neutrinoless double beta decay is found to be mmeff=0.037--0.047 eV. These predictions will be tested in the future neutrino experiments.


Full work available at URL: https://arxiv.org/abs/2009.12120




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