Quark and Lepton Mass and Mixing with non-universal from a 5d Standard Model with gauged
arXiv:2010.00100 · doi:10.1007/JHEP03(2021)078
Abstract
We propose a theory of quark and lepton mass and mixing with non-universal couplings based on a 5d Standard Model with quarks and leptons transforming as triplets under a new gauged isospin. In the 4d effective theory, the isospin is broken to , through a orbifold, then subsequently dynamically broken, resulting in a massive . Quarks and leptons in the 5d bulk appear as massless modes, with zero Yukawa couplings to the Higgs on the brane, and zero couplings to , at leading order, due to the symmetry. However, after the breaking, both Yukawa couplings and non-universal couplings are generated by heavy Kaluza-Klein exchanges. Hierarchical quark and lepton masses result from a hierarchy of 5d Dirac fermion masses. Neutrino mass and mixing arises from a novel type Ib seesaw mechanism, mediated by Kaluza-Klein Dirac neutrinos. The non-universal couplings may contribute to semi-leptonic decay ratios which violate universality. In this model such couplings are related to the corresponding quark and lepton effective Yukawa couplings.
25 pages, 5 figures. v3: matches published version
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