2025/11/20 by Loualidi, Mohamed Amin, Nasri, Salah, Rivera, Maximiliano A.
#FOS: Physical sciences #High Energy Physics - Phenomenology (hep-ph)
paper · doi:10.48550/arxiv.2511.16762
This study presents a radiative three-loop framework for neutrino mass generation, employing an asymmetric Yukawa coupling between two new scalar SU(2)L doublets and vector-like lepton doublets. Dark matter candidates arise from the scalar sector of one of the doublets and play a crucial role in the generation of neutrino masses through their nonzero scalar mixing. The singly charged scalar sector undergoes an analogous mixing structure. A single generation of vector-like leptons yields three nondegenerate neutrino masses as a consequence of the asymmetric Yukawa combinations entering the neutrino mass matrix. The model is tested against dark matter phenomenology, neutrino mass and mixing data, and the charged lepton flavor-violating process μ→ e γ, showing compatibility with current bounds and leading to experimentally accessible predictions.