English

Modular symmetry in the SMEFT

High Energy Physics - Phenomenology 2022-04-06 v2 High Energy Physics - Theory

Abstract

We study the modular symmetric standard-model effective field theory. We employ the stringy Ansatz on coupling structure that 4-point couplings y(4)y^{(4)} of matter fields are written by a product of 3-point couplings y(3)y^{(3)} of matter fields, i.e., y(4)=y(3)y(3)y^{(4)} = y^{(3)}y^{(3)}. In this framework, we discuss the flavor structure of bilinear fermion operators and 4-fermion operators, where the holomorphic and anti-holomorphic modular forms appear. From the Ansatz, the A4A_4 modular-invariant semileptonic four-fermion operator [EˉRΓER][DˉRΓDR][\,\bar E_R \Gamma E_R][\,\bar D_R \Gamma D_R\,] does not lead to the flavor changing (FC) processes since this operator would be constructed in terms of gauge couplings gg as y(3)gy^{(3)} \sim g. The chirality flipped bilinear operator [DˉRΓDL][\,\bar D_R \Gamma D_L\,] also does not lead FC if the mediated mode corresponds to the Higgs boson HdH_d. In this case, the flavor structure of this operator is the exactly same as the mass matrix. On the other hand, if the flavor structure of the operator is not the exactly same as the mass matrix, the situation would change drastically. Then, we obtain the non-trivial relations of FC transitions at nearby fixed points τ=i,ω,i\tau=i,\,\omega\,, i\infty, which are testable in the future. As an application, we discuss the relations of the lepton flavor violation processes μeγ,τμγ \mu\to e\gamma,\, \tau\to \mu\gamma and τeγ\tau\to e\gamma at nearby τe=i\tau_e=i, where the successful lepton mass matrix was obtained. We also study the flavor changing 4-quark operators in the A4A_4 modular symmetry of quarks. As a result, the minimal flavor violation could be realized by taking relevant specific parameter sets of order one.

Keywords

Cite

@article{arxiv.2112.00493,
  title  = {Modular symmetry in the SMEFT},
  author = {Tatsuo Kobayashi and Hajime Otsuka and Morimitsu Tanimoto and Kei Yamamoto},
  journal= {arXiv preprint arXiv:2112.00493},
  year   = {2022}
}

Comments

48 pages, 14 tables, revised discussion in Sec.4, several tables modified

R2 v1 2026-06-24T07:59:36.945Z