Confronting the inverse seesaw mechanism with the recent muon g-2 result
arXiv:2107.01315 · doi:10.1016/j.physletb.2021.136764
Abstract
Since the heavy neutrinos of the inverse seesaw mechanism mix largely with the standard ones, the charged currents formed with them and the muons have the potential of generating robust and positive contribution to the anomalous magnetic moment of the muon. Ho\-we\-ver, bounds from the non-unitary in the leptonic mixing matrix may restrict so severely the parameters of the mechanism that, depending on the framework under which the mechanism is implemented, may render it unable to explain the recent muon g-2 result. In this paper we show that this happens when we implement the mechanism into the standard model and into two versions of the 3-3-1 models.
References in corpus (7)
- Measurement of the Positive Muon Anomalous Magnetic Moment to 0.46 ppm
- Phenomenological Consequences of sub-leading Terms in See-Saw Formulas
- Scalar Bilepton Dark Matter
- Effect of steriles states on lepton magnetic moments and neutrinoless double beta decay
- Electron and Muon Anomalous Magnetic Moments in the Inverse Seesaw Extended NMSSM
- Large and signals of decays in a 3-3-1 model with inverse seesaw neutrinos
- A model for mixed warm and hot right-handed neutrino dark matter
Cited by in corpus (4)
- Muon g-2 and a type-X two Higgs doublet scenario: some studies in high-scale validity
- An explanation of experimental data of in 3-3-1 models with inverse seesaw neutrinos
- Heavy singly charged Higgs bosons and inverse seesaw neutrinos as origins of large in two higgs doublet models
- Neutrinoless Double Beta Decay and Mechanism in the Left-Right Symmetric Model