Noble Dark Matter: Surprising Elusiveness of Dark Baryons
Abstract
Dark matter could be a baryonic composite of strongly-coupled constituents transforming under SU(2). We classify the SU(2) representations of baryons in a class of simple confining dark sectors and find that the lightest state can be a pure singlet or a singlet that mixes with other neutral components of SU(2) representations, which strongly suppresses the dark matter candidate's interactions with the Standard Model. We focus on models with a confining and heavy dark quarks constituting vector-like -plet of SU(2). For benchmark and , we calculate baryon mass spectra, incorporating electroweak gauge boson exchange in the non-relativistic quark model, and demonstrate that above TeV mass scales, dark matter is dominantly a singlet state. The combination of this singlet nature with the recently discovered -parity results in an inert state analogous to noble gases, hence we coin the term Noble Dark Matter. Our results can be understood in the non-relativistic effective theory that treats the dark baryons as elementary states, where we find singlets accompanying triplets, 5-plets, or more exotic representations. This generalization of WIMP-like theories is more difficult to find or rule out than dark matter models that include only a single SU(2) multiplet (such as a Wino), motivating new searches in colliders and a re-analysis of direct and indirect detection prospects in astrophysical observations.
Cite
@article{arxiv.2412.14240,
title = {Noble Dark Matter: Surprising Elusiveness of Dark Baryons},
author = {Pouya Asadi and Austin Batz and Graham D. Kribs},
journal= {arXiv preprint arXiv:2412.14240},
year = {2024}
}
Comments
8 (double-column) + 20 (single-column) pages, 2 figures, 1+3 tables