The Frobenius group T13 and the canonical see-saw mechanism applied to neutrino mixing
arXiv:1109.5143 · doi:10.1103/PhysRevD.85.013012
Abstract
The compatibility of the Frobenius group T13 with the canonical see-saw mechanism of neutrino mixing is examined. The Standard Model is extended in a minimalist way, by introducing a family symmetry and three right-handed neutrinos. To fit experiments and place constraints on the possibilities, tribimaximal mixing is used as a guideline. The application of both a family symmetry group and the canonical see-saw mechanism naturally generates small neutrino masses. The various possibilities from combining these two models are listed. Enough constraints are produced to narrow down the parameters of the neutrino mass matrix to two. This is therefore a predictive model where neutrino mass eigenvalues and allowed regions for neutrinoless double beta decay are suggested.
Accepted for publication in Physical Review D. 13 pages
References in corpus (14)
- Indication of Electron Neutrino Appearance from an Accelerator-produced Off-axis Muon Neutrino Beam
- Double Beta Decay, Majorana Neutrinos, and Neutrino Mass
- Phenomenology with Massive Neutrinos
- Where we are on : addendum to "Global neutrino data and recent reactor fluxes: status of three-flavour oscillation parameters"
- 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
- A New 76Ge Double Beta Decay Experiment at LNGS
- Neutrinoless double beta decay and direct searches for neutrino mass
- T(13) Flavor Symmetry and Decaying Dark Matter
- Neutrino Mixing and the Private Higgs
- A schematic model of neutrinos
Cited by in corpus (15)
- Neutrino Mass and Mixing with Discrete Symmetry
- 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
- 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
- Deviation from Tri-Bimaximal Mixing and Large Reactor Mixing Angle
- Tribimaximal Mixing in the Texture
- Muon anomalies and the Yukawa relations
- 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
- Constraining Low-Scale Flavor Models with and Lepton Flavor Violation
- Asymmetric tri-bi-maximal mixing and residual symmetries