Dark Matter from Binary Tetrahedral Flavor Symmetry
arXiv:1111.4938 · doi:10.1016/j.physletb.2012.06.004
Abstract
The minimal renormalizable T'xZ2 model (MRT'M) is slightly extended in its Higgs scalar sector such that the abelian part of the flavor symmetry enlarges to (Z2xZ2'). All standard model and original MRT'M states will transform trivially under Z2'. Inspired by the Valencia group's A4 model building, we propose a T' WIMP candidate as the lightest Z2' odd scalar. This extension of the prior MRT'M model maintains the successful predictions for the neutrino mixing matrix and the Cabibbo angle, and provides an attractive candidate for dark matter (Phi_WIMP) with M_Phi \simeq 780 GeV.
Typos corrected; clarification added in Appendix B. 16 pages, LaTex
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- Flavor from the double tetrahedral group without supersymmetry: flavorful axions and neutrinos
- Flavor from the double tetrahedral group without supersymmetry
- Binary Icosahedral Flavor Symmetry for Four Generations of Quarks and Leptons
- A Radiative Model of Quark Masses with Binary Tetrahedral Symmetry
- Dark matter stability from non-Abelian discrete flavor symmetries
- Discrete dark matter mechanism