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arXiv:2507.02048·v2·High Energy Physics — Phenomenology

Enabling Thermal Dark Matter within the Vanilla - Model

Nicolás Bernal🇦🇪 · Jacinto P. Neto🇧🇷 · Javier Silva-Malpartida🇵🇪 · Farinaldo S. Queiroz🇧🇷

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Abstract

Thermal dark matter is a compelling setup that has been probed by a multitude of experiments, mostly in the GeV-TeV mass range. The thermal paradigm in the sub-GeV range is about to experience the same experimental test with the next generation of low-energy accelerators and light dark matter detectors. Motivated by this, we investigate thermal dark matter in the and assess how the introduction of a matter-dominated era impacts the parameter that yields the correct relic density. Interestingly, we show that the projected experiments, such as MuSIC, FCC-ee, and LDMX, will probe a large region of the viable parameter space that yields the correct relic density. In the GeV-TeV mass regime, the usual large-scale detectors push the sensitivity. Our work highlights the rich interplay between early-universe dynamics, dark matter phenomenology, and the discovery potential of next-generation experiments.

Comments: 9 (main) + 9 (appendix and references) pages; 9 figures; Version accepted for publication in Physical Review D

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