Non-zero θ13, CP-violation and Neutrinoless Double Beta Decay for Neutrino Mixing in the A4× Z2× Z3 Flavor Symmetry Model

Abstract

We study the modification of the Altarelli-Feruglio A4 flavor symmetry model by adding three singlet flavons ', '' and and the model is augmented with extra Z2× Z2 symmetry to prevent the unwanted terms in our study. The addition of these three flavons lead to two higher order corrections in the form of two perturbation parameters ε and ε. These corrections yield the deviation from exact tri-bimaximal (TBM) neutrino mixing pattern by producing a non-zero θ13 and other neutrino oscillation parameters which are consistent with the latest experimental data. In both the corrections, the neutrino masses are generated via Weinberg operator. The analysis of the perturbation parameters ε and ε, shows that normal hierarchy (NH) and inverted hierarchy (IH) for ε does not change much. However, as the values of ε increases, θ23 occupies the lower octant for NH case. We further investigate the neutrinoless double beta decay parmeter mββ using the parameter space of the model for both normal and inverted hierarchies of neutrino masses.

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