English

A Type-I Seesaw Framework with Non-Holomorphic Modular Symmetry

High Energy Physics - Phenomenology 2026-04-21 v1

Abstract

We study neutrino mass generation within the framework of non-holomorphic modular symmetry proposed by Qu and Ding. In this formalism, neutrino masses are generated via the Type-I seesaw mechanism, where the Yukawa couplings depend on non-holomorphic modular forms. The viability of the model is examined through a χ2\chi^2 analysis using current neutrino oscillation data. The χmin2\chi^2_{min} value is found to be 7.067.06 for normal hierarchy(NH). All neutrino oscillation parameters are consistent within their 1σ1\sigma allowed ranges, except the atmospheric mixing angle sin2θ23\sin^2\theta_{23}, which is predicted to lie in the second octant. The Dirac CP-violating phase(δCP\delta_{CP}) is constrained to the first and fourth quadrants, indicating relatively weak CP violation. These predictions can be tested in future long-baseline neutrino oscillation experiments. The sum of neutrino masses is compatible with the stringent bound proposed by the DESI experiment. However, the inverted hierarchy(IH) is not viable in this model, as the predicted value of χmin2\chi^2_{min} exceeds 100, and the mixing angles sin2θ12\sin^2\theta_{12} and sin2θ23\sin^2\theta_{23} lie outside the 3σ3 \sigma allowed ranges.

Keywords

Cite

@article{arxiv.2604.18070,
  title  = {A Type-I Seesaw Framework with Non-Holomorphic Modular Symmetry},
  author = {Cheshta and Priya and Suneel Dutt and B. C. Chauhan},
  journal= {arXiv preprint arXiv:2604.18070},
  year   = {2026}
}

Comments

9 pages, 1 figure, 5 tables, Accepted in EPJC

R2 v1 2026-07-01T12:18:04.338Z