"Heterotic" Discrete Flavor Model
arXiv:1305.4402 · doi:10.1103/PhysRevD.89.027701
Abstract
We present an extended 331 model with discrete flavor symmetry that simultaneously explains the need to have exactly three generations and provides acceptable quark and lepton masses and mixings. New fermionic states and gauge bosons are predicted within the reach of the LHC. We discuss the relevance to the 126 GeV scalar discovered at the LHC.
13 pages, v3: version to appear in PRD
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- Littlest Inverse Seesaw Model
- Lepton masses and mixings in a flavoured 3-3-1 model with type I and II seesaw mechanisms
- Flavored Non-Minimal Left-Right Symmetric Model Fermion Masses and Mixings
- flavor singlet-triplet Higgs model for fermion masses and mixings
- Muon anomalies and the Yukawa relations
- Lepton mass and mixing in a Neutrino Mass Model based on flavor symmetry
- Flavor from the double tetrahedral group without supersymmetry: flavorful axions and neutrinos
- Flavor from the double tetrahedral group without supersymmetry
- Lepton mass and mixing in a simple extension of the Standard Model based on T7 flavor symmetry
- Fermion masses and mixings in a model based on the discrete symmetry