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Effects of Bound States on Dark Matter Annihilation

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arxiv 1604.01776 v1 pith:SZFGQPAU submitted 2016-04-06 hep-ph astro-ph.HE

Effects of Bound States on Dark Matter Annihilation

classification hep-ph astro-ph.HE
keywords darkmatterboundannihilationeffectsphotonstatestates
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the impact of bound state formation on dark matter annihilation rates in models where dark matter interacts via a light mediator, the dark photon. We derive the general cross section for radiative capture into all possible bound states, and point out its non-trivial dependence on the dark matter velocity and the dark photon mass. For indirect detection, our result shows that dark matter annihilation inside bound states can play an important role in enhancing signal rates over the rate for direct dark matter annihilation with Sommerfeld enhancement. The effects are strongest for large dark gauge coupling and when the dark photon mass is smaller than the typical momentum of dark matter in the galaxy. As an example, we show that for thermal dark matter the Fermi gamma ray constraint is substantially increased once bound state effects are taken into account. We also find that bound state effects are not important for dark matter annihilation during the freeze out and recombination epochs.

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Cited by 2 Pith papers

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    For Higgs-coupled minimal dark matter, the 3M2D, 5M4D, and 7M6D combinations can have direct-detection cross sections below the neutrino floor, so next-generation direct detection cannot fully exclude the model.

  2. Dark Matter Energy Deposition and Production from the Table-Top to the Cosmos

    hep-ph 2019-07 unverdicted novelty 5.0

    The thesis presents a new 3-to-2 freezeout mechanism, bound-state effects on searches, a new axion interferometric search, reionization assessments, 21-cm constraints, and the DarkHistory code for ionization and therm...