Predictions for Neutrino Masses, $\beta\beta_{0\nu}$-Decay and Lepton Flavor Violation in a SUSY $SU(5) \times T^{\prime}$ Model of Flavour
Mu-Chun Chen, Kalyana T. Mahanthappa, Aurora Meroni, S. T. Petcov

TL;DR
This paper predicts neutrino masses, neutrinoless double beta decay rates, and lepton flavor violation processes within a SUSY $SU(5) imes T^{ prime}$ model that explains quark and lepton mixing.
Contribution
It introduces a SUSY $SU(5) imes T^{ prime}$ model providing new predictions for neutrino-related phenomena and lepton flavor violation.
Findings
Predicted neutrino mass spectrum consistent with experimental data
Estimated rates for neutrinoless double beta decay
Predicted branching ratios for lepton flavor violating decays
Abstract
We obtain predictions for the neutrino masses, the effective Majorana mass in neutrinoless double beta decay and for the rates of the lepton flavor violating processes , and in a SUSY Model of flavour, which gives rise to realistic masses and mixing patterns for quarks and leptons.
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Neutrino Physics Research · Astrophysics and Cosmic Phenomena
