An extended 3-3-1 model with radiative linear seesaw mechanism
arXiv:2105.01731 · doi:10.1016/j.physletb.2022.137082
Abstract
Motivated by the recent muon anomalous magnetic moment (g-2) measurement at FERMILAB and non-zero neutrino masses, we propose a model based on the (3-3-1) gauge symmetry. The most popular 3-3-1 models in the literature require the presence of a scalar sextet to address neutrino masses. In our work, we show that we can successfully implement an one-loop linear seesaw mechanism with right-handed neutrinos, and vector-like fermions to nicely explain the active neutrino masses, and additionally reproduce the recent Muon g-2 result, in agreement with existing bounds.
Version published in Physics Letters B
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Cited by in corpus (9)
- Universal Inverse seesaw mechanism as a source of the SM fermion mass hierarchy
- Linear seesaw mechanism from dark sector
- Dark linear seesaw mechanism
- The Muon Magnetic Moment and Physics Beyond the Standard Model
- Phenomenology of 3-3-1 models with radiative inverse seesaw mechanism
- Bottom quark and tau lepton masses in a toy
- Phenomenological aspects of the fermion and scalar sectors of a flavored 3-3-1 model
- Weak charges quantization in gauge models
- A two-generational model with extended weak sector: mass hierarchies, mixings, and the flavor non-universality