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Bound-state formation for thermal relic dark matter and unitarity

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Published 16 December 2014 , , Citation Benedict von Harling and Kalliopi Petraki JCAP12(2014)033 DOI 10.1088/1475-7516/2014/12/033

1475-7516/2014/12/033

Abstract

We show that the relic abundance of thermal dark matter annihilating via a long-range interaction, is significantly affected by the formation and decay of dark matter bound states in the early universe, if the dark matter mass is above a few TeV . We determine the coupling required to obtain the observed dark matter density, taking into account both the direct 2-to-2 annihilations and the formation of bound states, and provide an analytical fit. We argue that the unitarity limit on the inelastic cross-section is realized only if dark matter annihilates via a long-range interaction, and we determine the upper bound on the mass of thermal-relic dark matter to be about 197 (139) TeV for (non)-self-conjugate dark matter.

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10.1088/1475-7516/2014/12/033