Author:
Abada Asmaa,Bernal Nicolás,Cárcamo Hernández Antonio E.,Kovalenko Sergey,de Melo Téssio B.,Toma Takashi
Abstract
AbstractWe propose a scotogenic model for generating neutrino masses through a three-loop seesaw. It is a minimally extended inert doublet model with a spontaneously broken global symmetry U(1)′ and a preserved ℤ2symmetry. The three-loop suppression allows the new particles to have masses at the TeV scale without fine-tuning the Yukawa couplings. The model leads to a rich phenomenology while satisfying all the current constraints imposed by neutrinoless double-beta decay, charged-lepton flavor violation, and electroweak precision observables. The relatively large Yukawa couplings lead to sizable rates for charged lepton flavor violation processes, well within future experimental reach. The model could also successfully explain theWmass anomaly and provides viable fermionic or scalar dark matter candidates.
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Cited by
2 articles.
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1. Three-loop inverse scotogenic seesaw models;Journal of High Energy Physics;2024-05-03
2. Ultraviolet extensions of the Scotogenic model;Journal of High Energy Physics;2023-08-07