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arXiv · 1811.03018

Neutrino predictions from a left-right symmetric flavored extension of the standard model

Abstract

We propose a left-right symmetric electroweak extension of the Standard Model based on the $Δ\left( 27\right)$ family symmetry. The masses of all electrically charged Standard Model fermions lighter than the top quark are induced by a Universal Seesaw mechanism mediated by exotic fermions. The top quark is the only Standard Model fermion to get mass directly from a tree level renormalizable Yukawa interaction, while neutrinos are unique in that they get calculable radiative masses through a low-scale seesaw mechanism. The scheme has generalized $μ-τ$ symmetry and leads to a restricted range of neutrino oscillations parameters, with a nonzero neutrinoless double beta decay amplitude lying at the upper ranges generically associated to normal and inverted neutrino mass ordering.

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A. E. Cárcamo Hernández, Sergey Kovalenko, José W. F. Valle, C. A. Vaquera-Araujo. 2019-05-12. Neutrino predictions from a left-right symmetric flavored extension of the standard model. https://doi.org/10.1007/jhep02(2019)065

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