Fermion mass and mixing pattern in a minimal T7 flavor 331 model
Abstract
We present a model based on the gauge symmetry having an extra flavor group, which successfully describes the observed SM fermion mass and mixing pattern. In this framework, the light active neutrino masses arise via double seesaw mechanism and the observed charged fermion mass and quark mixing hierarchy is a consequence of the symmetry breaking at very high energy. In our minimal flavor 331 model, the spectrum of neutrinos includes very light active neutrinos as well as heavy and very heavy sterile neutrinos. The model has in total 16 effective free parameters, which are fitted to reproduce the experimental values of the 18 physical observables in the quark and lepton sectors. The obtained physical observables for both quark and lepton sectors are compatible with their experimental values. The model predicts the effective Majorana neutrino mass parameter of neutrinoless double beta decay to be 3 and 40 meV for the normal and the inverted neutrino spectrum, respectively. Furthermore, our model features a vanishing leptonic Dirac CP violating phase.
Keywords
Cite
@article{arxiv.1501.07261,
title = {Fermion mass and mixing pattern in a minimal T7 flavor 331 model},
author = {A. E. Cárcamo Hernández and R. Martinez},
journal= {arXiv preprint arXiv:1501.07261},
year = {2016}
}
Comments
18 pages. Final version. To be published in Journal of Physics G. arXiv admin note: substantial text overlap with arXiv:1309.6567