English

Dark Matter and $(g-2)_{e,\mu}$ in ISS(2,3) based Gauged $U(1)_{L_{e}-L{\mu}}$ Symmetric Model

High Energy Physics - Phenomenology 2023-02-21 v1

Abstract

We proposed a model which can explain the neutrino phenomenology, dark matter and anomalous magnetic moment(g2)(g-2) in a common framework. The inverted sea saw (ISS)(2,3) mechanism has been incorporated, in which we get an extra sterile state and this state act as a viable dark matter candidate. The right handed neutrino mass is obtained in TeV scale, which is accessible at LHC. The anomaly free U(1)LeLμU(1)_{L_{e}-L{\mu}} gauge symmetry is introduced to explain the anomalous magnetic moment of electron and muon because it provides a natural origin of (g2)(g-2) in a very minimal setup. The corresponding MeV scale gauge boson successfully explain the anomalous magnetic moment of electron and muon(g2)e,μ(g-2)_{e,\mu}, simultaneously. Thus obtained neutrino phenomenology and relic abundance of dark matter are compatible with experimental results.

Keywords

Cite

@article{arxiv.2302.09282,
  title  = {Dark Matter and $(g-2)_{e,\mu}$ in ISS(2,3) based Gauged $U(1)_{L_{e}-L{\mu}}$ Symmetric Model},
  author = {Rishu Verma and Ankush and B. C. Chauhan},
  journal= {arXiv preprint arXiv:2302.09282},
  year   = {2023}
}

Comments

16 pages, 4 figures, 2 tables