arXiv · 1702.01141
Cosmological Implications of Dark Matter Bound States
Abstract
We present generic formulae for computing how Sommerfeld corrections together with bound-state formation affects the thermal abundance of Dark Matter with non-abelian gauge interactions. We consider DM as a fermion 3plet (wino) or 5plet under SU(2)$_L$. In the latter case bound states raise to 14 TeV the DM mass required to reproduce the cosmological DM abundance and give indirect detection signals such as (for this mass) a dominant $γ$-line around 85 GeV. Furthermore, we consider DM co-annihilating with a colored particle, such as a squark or a gluino, finding that bound state effects are especially relevant in the latter case.
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Andrea Mitridate, Michele Redi, Juri Smirnov, Alessandro Strumia. 2018-07-06. Cosmological Implications of Dark Matter Bound States. https://doi.org/10.1088/1475-7516%2F2017%2F05%2F006
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