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Published March 26, 2020 | Version v1
Journal article

CP violations in a predictive A4 symmetry model

  • 1. Department of Physics, Can Tho University, 3/2 Street, Can Tho (Viet Nam)
  • 2. Institute of Research and Development, Duy Tan University, Da Nang 550000 (Viet Nam)
  • 3. Department of Education and Training of Ca Mau, 70 Phan Dinh Phung (Viet Nam)

Description

We will investigate numerically a seesaw model with A4 flavor symmetry to find allowed regions satisfying the current experimental neutrino oscillation data, then use them to predict physical consequences. Namely, the lightest active neutrino mass is of the order of O(102) eV. The effective neutrino mass m associated with neutrinoless double beta decay is in the range [0.002eV,0.038eV] and [0.048eV,0.058eV], corresponding to the normal and the inverted hierarchy schemes, respectively. Other relations among relevant physical quantities are shown, so that they can be determined if some of them are confirmed experimentally. The recent data of the baryon asymmetry of the Universe (ηB) can be explained via leptogenesis caused by the effect of the renormalization group evolution on the Dirac Yukawa couplings, provided the right-handed neutrino mass scale M0 ranges from O(108) GeV to O(1012) GeV for tanβ=3. This allowed M0 range is different from the scale of O(1013) GeV for other effects that also generate a consistent ηB from leptogenesis. The branching ratio of the decay μeγ may reach future experimental sensitivity for very light values of M0. Hence, it will be inconsistent with the M0 range predicted from the ηB data whenever this decay is detected experimentally.

Availability note (English)

Available from http://dx.doi.org/10.1093/ptep/ptaa007; Available from http://repo.scoap3.org/records/59716

Additional details

Additional titles

Augmented title (English)
(free terms) Beyond the Standard Model; CP violation; Neutrino physics; Rare decays

Publishing Information

Journal Title
Progress of Theoretical and Experimental Physics
Journal Volume
2020
Journal Issue
3
Journal Page Range
35 p.
ISSN
2050-3911

Optional Information

Copyright
Copyright (c) The Author(s) 2020. Published by Oxford University Press on behalf of the Physical Society of Japan.
Notes
PUBLISHER-ID: ptaa007; OAI: oai:repo.scoap3.org:59716