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May 8, 2026The European Physical Journal C0 citationsOpen Access

Neutrino mass and mixing, resonant leptogenesis and charged lepton flavor violation in a minimal inverse seesaw model with S₄ symmetry

VVV. V. VienMSMayengbam Kishan Singh

Key Points

  • The research investigates a minimal inverse seesaw model to explain neutrino mass and mixing properties.
  • Developed a model based on S4 symmetry for Majorana neutrinos
  • Analyzed parameters for neutrino oscillation and baryon asymmetry
  • Predicted charged lepton flavor violation outcomes
  • Model favors normal neutrino mass ordering with a higher octant for θ23.
  • Predicted sum of neutrino masses is approximately 58.98 meV.
  • Effective Majorana neutrino mass estimated at 6.2 meV, aligning with experimental observations.

Abstract

Abstract We propose a minimal inverse seesaw model with S₄ S 4 symmetry for the Majorana neutrinos with only one real (m₀ m 0) -and two complex (, α, β) parameters in neutrino sector which gives reasonable predictions for the neutrino oscillation parameters, the observed baryon asymmetry of the Universe and the charged lepton flavor violation. The resulting model reveals a favor for normal neutrino mass ordering, a higher octant of ₂₃ θ 23 and a lower half-plane of Dirac CP violation phase. The predictions of the model for sum of neutrino masses and the effective Majorana neutrino mass are centered around 58. 98 meV and 6. 2 meV, respectively. The model also provides the predictions of the baryon asymmetry and charged lepton flavour violation processes which are consistent with the experimental observations.

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Cite This Study

Vien et al. (2026) studied this question.

synapsesocial.com/papers/69fd7d94bfa21ec5bbf06037https://doi.org/10.1140/epjc/s10052-026-15700-5
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