Muon and Electron $g-2$ and the Origin of Fermion Mass Hierarchy
Abstract
We present a model that gives a natural explanation to the charged lepton mass hierarchy and study the contributions to the electron and the muon . In the model, we introduce lepton-flavor-dependent symmetry and three additional Higgs doublets with charges, to realize that each generation of charged leptons couples to one of the three additional Higgs doublets. The symmetry is softly broken by charges, and the smallness of the soft breaking naturally gives rise to the hierarchy of the Higgs VEVs, which then accounts for the charged lepton mass hierarchy. Since electron and muon couple to different scalar particles, each scalar contributes to the electron and the muon differently. We survey the space of parameters of the Higgs sector and find that there are sets of parameters that explain the muon discrepancy. On the other hand, we cannot find the parameter sets that can explain discrepancy within 2. Here the symmetry suppresses charged lepton flavor violation.
Keywords
Cite
@article{arxiv.2002.10230,
title = {Muon and Electron $g-2$ and the Origin of Fermion Mass Hierarchy},
author = {Naoyuki Haba and Yasuhiro Shimizu and Toshifumi Yamada},
journal= {arXiv preprint arXiv:2002.10230},
year = {2020}
}
Comments
11 pages, 1 figure, accepted for publication in PTEP