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Molecular Chemistry for Dark Matter

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arxiv 2106.13245 v2 pith:RYYXY6RD submitted 2021-06-24 astro-ph.CO physics.chem-ph

classification astro-ph.COphysics.chem-ph
keywords moleculardarkmattercoolingdissipativeformationmassrates
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Molecular cooling is essential for studying the formation of sub-structure of dissipative dark-matter halos that may host compact objects such as black holes. Here, we analyze the reaction rates relevant for the formation, dissociation, and transition of hydrogenic molecules while allowing for different values of the physical parameters: the coupling constant, the proton mass, and the electron mass. For all cases, we re-scale the reaction rates for the standard molecular hydrogen, so our results are valid as long as the dark matter is weakly coupled and one of the fermions is much heavier than the other. These results will allow a robust numerical treatment of cosmic structure, in particular for mini-halos for which molecular cooling is important, in a dissipative dark matter scenario.

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Cited by 1 Pith paper

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  1. Dark Astronomy with Dark Matter Detectors

    astro-ph.CO 2024-12 conditional novelty 7.0 of 10

    A proposal to detect the dark photon starlight from dissipative dark matter, with a new directional surface conversion mechanism in metals.

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