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Dark Matter Subhalo Evaporation by Coulomb-like Interaction with Galactic Gas

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arxiv 2311.11584 v1 pith:FGTYKWRP submitted 2023-11-20 astro-ph.CO hep-ph

classification astro-ph.COhep-ph
keywords darkmattercoulomb-likeevaporationcrossdetectiondirectgalactic
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Coulomb-like interactions typically has a cross section scales with velocity dependence as $\sigma=\sigma_0 v^{-4}$. The momentum transfer rate between a slightly charged dark matter and ionized particles increases significantly at low velocity, and it produces prominent evaporation effects on small-sized dark matter overdensities. We show that when subhalos encounter the hot gases near the Milky Way's disc, their survival can place stringent limits on Coulomb-like scattering strength. For $M<10^5 M_\odot$ subhalos to survive a kilo-parsec distance from the galactic center, with a dark matter mass in the sub-GeV range, the evaporation limit becomes one order of magnitude stronger than the limits from current cosmic microwave background and baryon acoustic oscillation data. We also interpret our bounds into the electron-recoil direct detection cross section, and show that the evaporation effect can lead to a stronger constraint on Coulomb-like interaction for sub-MeV dark matter in comparison with direct detection experiments.

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  1. Forecasting 21-cm power spectrum sensitivity to dark Matter-baryon scattering

    astro-ph.CO 2025-08 conditional novelty 5.0 of 10

    HERA 21-cm power spectrum forecasts could constrain dark matter-baryon scattering cross-sections 5 to 10 times better than global 21-cm forecasts and far better than current CMB and satellite bounds.

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