English

Modular Invariant Quark and Lepton Models in Double Covering of $S_4$ Modular Group

High Energy Physics - Phenomenology 2021-03-31 v2

Abstract

We perform a comprehensive analysis of the homogeneous finite modular group Γ4S4\Gamma'_4\equiv S'_4 which is the double covering of S4S_4 group. The weight 1 modular forms of level 4 are constructed in terms of Dedekind eta function, and they transform as a triplet 3^\mathbf{\hat{3}'} of S4S'_4. The integral weight modular forms until weight 6 are built from the tensor products of weight 1 modular forms. We perform a systematical classification of S4S'_4 modular models for lepton masses and mixing with/without generalized CP, where the left-handed leptons are assigned to triplet of S4S'_4 and right-handed charged leptons transform as singlets under S4S'_4, and we consider both scenarios where the neutrino masses arise from Weinberg operator or type I seesaw mechanism. The phenomenological implications of the minimal models for lepton masses, mixing angles, CP violation phases and neutrinoless double decay are discussed. The S4S'_4 modular symmetry is extended to quark sector, we present several predictive models which use nine or ten free parameters including real and imaginary parts of τ\tau to describe quark masses and Cabibbo-Kobayashi-Maskawa mixing matrix. We give a quark-lepton unified model which can explain the flavor structure of quarks and leptons simultaneously for a common value of τ\tau.

Keywords

Cite

@article{arxiv.2006.10722,
  title  = {Modular Invariant Quark and Lepton Models in Double Covering of $S_4$ Modular Group},
  author = {Xiang-Gan Liu and Chang-Yuan Yao and Gui-Jun Ding},
  journal= {arXiv preprint arXiv:2006.10722},
  year   = {2021}
}

Comments

54 pages, 8 figures