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May 8, 2026The European Physical Journal COpen Access

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

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Authors

VVV. V. VienMSMayengbam Kishan Singh

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Overview

The random trial reveals neutrino mass predictions and flavor violation in a minimal model, suggesting significant implications for cosmology.

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.

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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