English

Type-III Seesaw in Non-Holomorphic Modular Symmetry and Leptogenesis

High Energy Physics - Phenomenology 2025-08-08 v1 High Energy Physics - Theory

Abstract

Recently, Qu and Ding, have proposed a formalism where modular invariance is extended to non-supersymmetric scenario considering Yukawa couplings as non-holomorphic functions of modules field τ\tau. Adopting this formalism in this work, we propose a Type-III seesaw model as a unified framework to explain lepton masses and mixing and baryogenesis via leptogenesis. χ2\chi^2 analysis is performed to fit the neutrino oscillation data from NuFIT~6.0 leading to a normal hierarchical pattern of neutrino masses and constrained CPCP phases. Furthermore, we analyze the generation of the observed baryon asymmetry of the Universe via thermal leptogenesis where the decays of the lightest fermion triplet Σ1\Sigma_1 into lepton-Higgs final states produce a CPCP asymmetry εCP\varepsilon_{CP}. The complex modules τ\tau is responsible for the CPCP asymmetry produced during leptogenesis. The washout processes dominated by gauge scatterings and inverse decays are studied through the full set of Boltzmann equations. The resulting BLB-L asymmetry, YBL109Y_{B-L}\sim 10^{-9} successfully reproduces the baryon-to-photon ratio demonstrating the model's capability to link low-energy neutrino data with the baryogenesis. The strong gauge-mediated washout of fermion triplets necessitates a leptogenesis scale of O(1012GeV)\mathcal{O}(10^{12}\,\mathrm{GeV}) ensuring compatibility with both the Davidson-Ibarra bound and the thermal history of the Universe. Future pursuits remain open to the exploration of novel avenues aimed at lowering the energy scale associated with leptogenesis.

Keywords

Cite

@article{arxiv.2508.05047,
  title  = {Type-III Seesaw in Non-Holomorphic Modular Symmetry and Leptogenesis},
  author = {Priya and Labh Singh and B. C. Chauhan and Surender Verma},
  journal= {arXiv preprint arXiv:2508.05047},
  year   = {2025}
}

Comments

20 pages, 6 figures, 5 tables