Neutrino Mixing and the Frobenius Group T13
arXiv:1106.0333 · doi:10.1016/j.nuclphysb.2011.07.023
Abstract
We show that the Frobenius group is a suitable family symmetry group to study neutrino oscillations. Our approach is to catalog all possibilities within an effective field theory approach, assuming only SU(2)xU(1) supplemented by family symmetry. We will use tribimaximal mixing as a guide to place a constraint on the otherwise various possibilities. This leads to an exact fit between the neutrino and charged lepton sector. Such a fit has not been achieved with any other group so far. The results of this paper may then be useful in future studies on the compatibility of this Frobenius group with other models and mechanisms.
19 pages
References in corpus (9)
- Phenomenology with Massive Neutrinos
- Tri-Bimaximal Neutrino Mixing and the Family Symmetry Z_7 x Z_3
- Minimal Modification To The Tri-bimaximal Neutrino Mixing
- Tribimaximal Mixing From Small Groups
- Model of Geometric Neutrino Mixing
- Observable T_7 Lepton Flavor Symmetry at the Large Hadron Collider
- T(13) Flavor Symmetry and Decaying Dark Matter
- Tri-Bimaximal Neutrino Mixing and the Flavor Symmetry
- Neutrino Mixing and the Private Higgs
Cited by in corpus (18)
- Neutrino Mass and Mixing with Discrete Symmetry
- Finite flavour groups of fermions
- A 3-3-1 model with right-handed neutrinos based on the family symmetry
- The flavor 3-3-1 model with neutral leptons
- A highly predictive flavour 3-3-1 model with radiative inverse seesaw mechanism
- Stitching an Asymmetric Texture with Family Symmetry
- The Frobenius group T13 and the canonical see-saw mechanism applied to neutrino mixing
- Flavored Non-Minimal Left-Right Symmetric Model Fermion Masses and Mixings
- flavor singlet-triplet Higgs model for fermion masses and mixings
- Leptogenesis from the Asymmetric Texture
- Muon anomalies and the Yukawa relations
- Tribimaximal Mixing in the Texture
- New Interpretation of the Recent Result of AMS-02 and Multi-component Decaying Dark Matters with non-Abelian Discrete Flavor Symmetry
- Low-scale Resonant Leptogenesis in GUT with Family Symmetry
- Symmetryless Dark Matter
- Constraining Low-Scale Flavor Models with and Lepton Flavor Violation
- Asymmetric tri-bi-maximal mixing and residual symmetries
- Theory and phenomenology of Dirac neutrinos