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$\mu\to e\gamma$ in a supersymmetric radiative neutrino mass model

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arxiv 1510.02253 v2 pith:PEPZ35OU submitted 2015-10-08 hep-ph

classification hep-ph
keywords neutrinomodelgammamassessupersymmetricmassaboveacquire
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abstract

We have considered a supersymmetric version of the inert Higgs doublet model, whose motivation is to explain smallness of neutrino masses and existence of dark matter. In this supersymmetric model, due to the presence of discrete symmetries, neutrinos acquire masses at loop level. After computing these neutrino masses, in order to fit the neutrino oscillation data, we have shown that by tuning some supersymmetry breaking soft parameters of the model, neutrino Yukawa couplings can be unsuppressed. In the above mentioned parameter space, we have computed branching ratio of the decay $\mu\to e\gamma$. To be consistent with the current experimental upper bound on $Br(\mu\to e\gamma)$, we have obtained constraints on the right-handed neutrino mass of this model.

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Cited by 1 Pith paper

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  1. Lepton flavor violation in the Majorana and Dirac scotogenic models

    hep-ph 2025-02 conditional novelty 5.0 of 10

    In the Majorana and Dirac scotogenic models, the 3-body tau decay τ→3μ can reach branching ratios of about 10^-10 and 10^-11 respectively, after muon constraints and perturbativity are imposed.

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