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Asymmetric Matters from a Dark First-Order Phase Transition

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arxiv 1911.12342 v2 pith:7P7TNNBI submitted 2019-11-27 hep-ph astro-ph.CO

Asymmetric Matters from a Dark First-Order Phase Transition

classification hep-ph astro-ph.CO
keywords darkmatterfirst-orderphasetransitioneithermodelscenario
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We introduce a model for matters-genesis in which both the baryonic and dark matter asymmetries originate from a first-order phase transition in a dark sector with an $SU(3)\times SU(2)\times U(1)$ gauge group and minimal matter content. In the simplest scenario, we predict that dark matter is a dark antineutron with mass either $m_{\bar{n}} = 1.36$ GeV or $m_{\bar{n}} = 1.63$ GeV. Alternatively, dark matter may be comprised of equal numbers of dark antiprotons and pions. This model, in either scenario, is highly discoverable through both dark matter direct detection and dark photon search experiments. The strong dark matter self interactions may ameliorate small-scale structure problems, while the strongly first-order phase transition may be confirmed at future gravitational wave observatories.

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Cited by 5 Pith papers

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