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arXiv:2605.13958·v1·High Energy Physics — Phenomenology

Baryoid Dark Matter from Domain Walls: The origin of the dark matter-baryon coincidence

Yang Bai🇺🇸 · Ting-Kuo Chen🇺🇸

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Abstract

We propose an explanation for the dark matter-baryon coincidence based on collapsing domain walls, which form a novel compact baryonic state: the baryoid. A baryoid has an asteroid-scale mass and up-to-nuclear-scale energy density, and can serve as a dark matter candidate. Starting from equal baryon numbers in the domains formed in the early universe, the collapse of the domain walls after the QCD phase transition leads to a baryon-number ratio of between the false- and true-vacuum domains. Since baryons are slightly lighter in the false-vacuum domains than in the true-vacuum domain, the resulting dark matter-to-baryon energy-density ratio is naturally close to, but slightly smaller than, , or for . We calculate the domain-wall dynamics and the efficiency of baryon-number trapping, derive the resulting baryoid properties, and discuss a broad set of phenomenological probes.

Comments: 43 pages, 6 figures

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