Flavino Dark Matter in a Non-Abelian Discrete Flavor Model
Abstract
We study a relic density of the flavino dark matter in modified Altarelli and Feruglio model which is respecting the symmetry. We calculate the Lagrangian from the superpotential in the model. In estimating relic density, we consider the relevant interactions from the Lagrangian that realize the vacuum expectation value alignments and charged lepton masses where we assume that the supersymmetry breaking effects are small for flavon sector. As a result, we find the degenerate masses between the lightest ``flavon'' and ``flavino'', and only two parameters in the potential determines the relic density. Then allowed parameter space of these parameters are estimated from relic density calculation taking a constraint from lepton flavor violation into account. We also briefly discuss other dark matter physics such as direct detection, indirect detection and collider search.
Keywords
Cite
@article{arxiv.2405.14163,
title = {Flavino Dark Matter in a Non-Abelian Discrete Flavor Model},
author = {Takaaki Nomura and Yusuke Shimizu and Towa Takahashi},
journal= {arXiv preprint arXiv:2405.14163},
year = {2024}
}
Comments
15 pages, 7 figures, miner modifications