Self-Interacting Dark Matter from a Non-Abelian Hidden Sector
Abstract
There is strong evidence in favor of the idea that dark matter is self interacting, with the cross section-to-mass ratio . We show that viable models of dark matter with this large cross section are straightforwardly realized with non-Abelian hidden sectors. In the simplest of such models, the hidden sector is a pure gauge theory, and the dark matter is composed of hidden glueballs with a mass around . Alternatively, the hidden sector may be a supersymmetric pure gauge theory with a gluino thermal relic. In this case, the dark matter is largely composed of glueballinos that strongly self interact through the exchange of light glueballs. We present a unified framework that realizes both of these possibilities in anomaly-mediated supersymmetry breaking, where, depending on a few model parameters, the dark matter may be composed of hidden glueballinos, hidden glueballs, or a mixture of the two. These models provide simple examples of multicomponent dark matter, have interesting implications for particle physics and cosmology, and include cases where a subdominant component of dark matter may be extremely strongly self interacting, with interesting astrophysical consequences.
Cite
@article{arxiv.1402.3629,
title = {Self-Interacting Dark Matter from a Non-Abelian Hidden Sector},
author = {Kimberly K. Boddy and Jonathan L. Feng and Manoj Kaplinghat and Tim M. P. Tait},
journal= {arXiv preprint arXiv:1402.3629},
year = {2015}
}
Comments
25 pages; v2: added references, published version; v3: note added