English

Two-component scalar dark matter in $Z_{2n}$ scenarios

High Energy Physics - Phenomenology 2022-12-21 v2

Abstract

In multi-component scalar dark matter scenarios, a single ZNZ_N (N4N\geq 4) symmetry may account for the stability of different dark matter particles. Here we study the case where NN is even (N=2nN=2n) and two species, a complex scalar and a real scalar, contribute to the observed dark matter density. We perform a phenomenological analysis of three scenarios based on the Z4Z_4 and Z6Z_6 symmetries, characterizing their viable parameter spaces and analyzing their detection prospects. Our results show that, thanks to the new interactions allowed by the Z2nZ_{2n} symmetry, current experimental constraints can be satisfied over a wider range of dark matter masses, and that these scenarios may lead to observable signals in direct detection experiments. Finally, we argue that these three scenarios serve as prototypes for other two-component Z2nZ_{2n} models with one complex and one real dark matter particle.

Keywords

Cite

@article{arxiv.2106.11889,
  title  = {Two-component scalar dark matter in $Z_{2n}$ scenarios},
  author = {Carlos E. Yaguna and Óscar Zapata},
  journal= {arXiv preprint arXiv:2106.11889},
  year   = {2022}
}

Comments

21 pages, 11 figures; v2 matches version published in JHEP