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arXiv:2512.14119·v2·High Energy Physics — Phenomenology

A new idea for relating the asymmetric dark matter mass scale to the proton mass

Peter Cox🇦🇺 · Rafael E. Pérez🇦🇺 · Raymond R. Volkas🇦🇺

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Abstract

Asymmetric dark matter is a well-motivated approach to explain the apparent coincidence between the relic densities of visible and dark matter, . A complete explanation requires two components, a relation between the particle masses of the dark and visible matter, and a second relation between the number densities in each sector. In this work, we propose a new mechanism to address the former. We consider an extended colour group in the visible sector, with QCD embedded as the diagonal subgroup. A exchange symmetry then relates to a dark, confining sector. The dark matter is a composite state of dark fermions transforming in the fundamental representation of . The spontaneously broken symmetry ultimately leads to a relation between the QCD and dark gauge couplings which, for suitable field content, gives rise to confinement scales of the same order of magnitude. The mechanism leads to a rich particle spectrum above the TeV scale which could be probed at future experiments. The model also naturally includes an axion solution to the strong CP problem.

Comments: 15 pages, 4 figures; v2: Discussion added

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