English

FIMP and Muon ($g-2$) in a U$(1)_{L_{\mu}-L_{\tau}}$ Model

High Energy Physics - Phenomenology 2017-02-27 v3

Abstract

The tightening of the constraints on the standard thermal WIMP scenario has forced physicists to propose alternative dark matter (DM) models. One of the most popular alternate explanations of the origin of DM is the non-thermal production of DM via freeze-in. In this scenario the DM never attains thermal equilibrium with the thermal soup because of its feeble coupling strength (1012\sim 10^{-12}) with the other particles in the thermal bath and is generally called the Feebly Interacting Massive Particle (FIMP). In this work, we present a gauged U(1)LμLτ_{L_{\mu}-L_{\tau}} extension of the Standard Model (SM) which has a scalar FIMP DM candidate and can consistently explain the DM relic density bound. In addition, the spontaneous breaking of the U(1)LμLτ_{L_{\mu}-L_{\tau}} gauge symmetry gives an extra massive neutral gauge boson ZμτZ_{\mu\tau} which can explain the muon (g2g-2) data through its additional one-loop contribution to the process. Lastly, presence of three right-handed neutrinos enable the model to successfully explain the small neutrino masses via the Type-I seesaw mechanism. The presence of the spontaneously broken U(1)LμLτ_{L_{\mu}-L_{\tau}} gives a particular structure to the light neutrino mass matrix which can explain the peculiar mixing pattern of the light neutrinos.

Keywords

Cite

@article{arxiv.1612.03067,
  title  = {FIMP and Muon ($g-2$) in a U$(1)_{L_{\mu}-L_{\tau}}$ Model},
  author = {Anirban Biswas and Sandhya Choubey and Sarif Khan},
  journal= {arXiv preprint arXiv:1612.03067},
  year   = {2017}
}

Comments

30 pages, 8 figures, 3 tables, Version Published in JHEP