$T_7$ Flavor Model in Three Loop Seesaw and Higgs Phenomenology
Abstract
We propose a new type of radiative seesaw model in which observed neutrino masses are generated through a three-loop level diagram in combination with tree-level type-II seesaw mechanism in a renormalizable theory. We introduce a Non-abelian flavor symmetry in order to constrain the form of Yukawa interactions and Higgs potential. Although several models based on a Non-abelian flavor symmetry predict the universal coupling constants among the standard model like Higgs boson and charged leptons, which is disfavored by the current LHC data, our model can avoid such a situation. We show a benchmark parameter set that is consistent with the current experimental data, and we discuss multi-muon events as a key collider signature to probe our model.
Keywords
Cite
@article{arxiv.1307.0480,
title = {$T_7$ Flavor Model in Three Loop Seesaw and Higgs Phenomenology},
author = {Yuji Kajiyama and Hiroshi Okada and Kei Yagyu},
journal= {arXiv preprint arXiv:1307.0480},
year = {2015}
}
Comments
Footnote 6 is slightly modified