Type III seesaw under modular symmetry with leptogenesis
arXiv:2204.08338 · doi:10.1140/epjc/s10052-022-11074-6
Abstract
We make an attempt to study neutrino phenomenology in the framework of type-III seesaw by considering modular symmetry in the super-symmetric context. In addition, we have included a local symmetry which eventually helps us to avoid certain unwanted terms in the superpotential. Hitherto, the seesaw being type-III, it involves three fermion triplet superfields , along with which, we have included a singlet weighton field . In here, modular symmetry plays a crucial role by avoiding the usage of excess flavon (weighton) fields. Also, the Yukawa couplings acquire modular forms which are expressed in terms of Dedekind eta function . However, for numerical analysis we use expansion expressions of these couplings. Therefore, the model discussed here is triumphant enough to accommodate the observed neutrino oscillation data and also successfully explains observed baryon asymmetry of the universe through leptogenesis.
27 pages, 22 figures
References in corpus (15)
- Leptogenesis
- Flavour Matters in Leptogenesis
- Low energy effects of neutrino masses
- Leptogenesis and Low Energy CP Violation in Neutrino Physics
- Imprints of massive inverse seesaw model neutrinos in lepton flavor violating Higgs boson decays
- Flavour-Dependent Leptogenesis with Sequential Dominance
- Towards a complete SUSY GUT
- Is S4 the horizontal symmetry of tri-bimaximal lepton mixing?
- Mixing of Active and Sterile Neutrinos
- Neutrino Mass Sum-rules in Flavor Symmetry Models
- A Minimal Type II Seesaw Model
- Leptogenesis with Linear, Inverse or Double Seesaw
- Minimal Dynamical Inverse See Saw
- Leptonic Sum Rules from Flavour Models with Modular Symmetries
- Radiative Neutrino Mass in Type III Seesaw Model
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- The Seesaw Evaded Modular Dirac Framework