$U(1)$-charged Dark Matter in three-Higgs-doublet models
Abstract
We explore three-Higgs-doublet models that may accommodate scalar Dark Matter where the stability is based on an unbroken -based symmetry, rather than the familiar symmetry. Our aim is to classify all possible ways of embedding a symmetry in a three-Higgs-doublet model. The different possibilities are presented and compared. All these models contain mass-degenerate pairs of Dark Matter candidates due to a symmetry unbroken (conserved) by the vacuum. Most of these models preserve CP. In the CP-conserving case the pairs can be seen as one being even and the other being odd under CP or as having opposite charges under . Not all symmetries presented here were identified before in the literature, which points to the fact that there are still many open questions in three-Higgs-doublet models. We also perform a numerical exploration of the -symmetric 3HDM, this is the most general phase-invariant (real) three-Higgs-doublet model. The model contains a multi-component Dark Matter sector, with two independent mass scales. After imposing relevant experimental constraints we find that there are possible solutions throughout a broad Dark Matter mass range, 45-2000 GeV, the latter being a scan cutoff.
Cite
@article{arxiv.2408.02728,
title = {$U(1)$-charged Dark Matter in three-Higgs-doublet models},
author = {A. Kunčinas and P. Osland and M. N. Rebelo},
journal= {arXiv preprint arXiv:2408.02728},
year = {2024}
}
Comments
103 pages, 5 figures, v2: added references, minor text changes