A Higher-dimensional Origin of the Inverted Mass Hierarchy for Neutrino
arXiv:hep-ph/0511336 · doi:10.1016/j.physletb.2005.12.036
Abstract
We present successful lepton mass matrices with an inverted mass hierarchy for neutrinos, which follow from a geometrical structure of a (1+5) dimensional space-time where two extra dimensions are compactified on the T^2/Z_3 orbifold. A 5^* and a right-handed neutrino N in each family are localized on each of the equivalent three fixed points of the orbifold while three 10's and Higgs doublets H_u and H_d live in the bulk. An S_3 family symmetry is assumed on three 5^*'s and on three N's, since the three fixed points are equivalent to one another. The Higgs field ϕresponsible for the B-L breaking is localized on one of the three fixed points, which generates the inverted hierarchy for the neutrino masses. The baryon asymmetry is well explained in the non-thermal leptogenesis via inflaton decay. We emphasize that the present model predicts the effective neutrino mass, <m>_{ee}, responsible for neutrinoless double beta decays as <m>_{ee}\simeq 50 meV. This will be accessible to future experiments.
15 pages
Cited by in corpus (8)
- Discrete Flavor Symmetries and Models of Neutrino Mixing
- A SUSY SU(5) Grand Unified Model of Tri-Bimaximal Mixing from A4
- Model Predictions for Neutrino Oscillation Parameters
- Tri-bimaximal Mixing from Cascades
- Scotogenic S3 symmetric generation of realistic neutrino mixing
- A neutrino mass model with S3 symmetry and see-saw interplay
- Theoretical Models of Neutrino Mixing: Recent Developments
- Examining the Geometrical Model with Inverted Mass Hierarchy for Neutrinos