arXiv:2201.10759·v1·High Energy Physics — Phenomenology
Lepton flavor violation and scotogenic Majorana neutrino mass in a Stueckelberg model
Chuan-Hung Chen🇹🇼 · Cheng-Wei Chiang🇹🇼 · Takaaki Nomura🇨🇳 · Chun-Wei Su🇹🇼
Abstract
We construct a scotogenic Majorana neutrino mass model in a gauged extension of the standard model, where the mass of the gauge boson and the unbroken gauge symmetry, which leads to a stable dark matter (DM), can be achieved through the Stueckelberg mechanism. It is found that the simplest version of the extended model consists of the two inert-Higgs doublets and one vector-like singlet fermion. In addition to the Majorana neutrino mass, we study the lepton flavor violation (LFV) processes, such as , , conversion rate in nucleus, and muonium-antimuonium oscillation. We show that the sensitivities of and conversion rate designed in Mu3e and COMET/Mu2e experiments make both decays the most severe constraints on the LFV processes. It is found that and can reach the designed significance level of Belle II. In addition to explaining the DM relic density, we also show that the DM-nucleon scattering cross section can satisfy the currently experimental limit of DM direct detection.
Comments: 31 pages, 12 figures