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Dark Matter Assimilation into the Baryon Asymmetry

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arxiv 1111.5615 v3 pith:ZHDCFNPA submitted 2011-11-23 hep-ph astro-ph.CO

classification hep-phastro-ph.CO
keywords darkmatterassimilationasymmetrybaryonabundanceheavymechanism
verification ladder T0 review T1 audit T2 compute T3 formal
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Pure singlets are typically disfavored as dark matter candidates, since they generically have a thermal relic abundance larger than the observed value. In this paper, we propose a new dark matter mechanism called "assimilation", which takes advantage of the baryon asymmetry of the universe to generate the correct relic abundance of singlet dark matter. Through assimilation, dark matter itself is efficiently destroyed, but dark matter number is stored in new quasi-stable heavy states which carry the baryon asymmetry. The subsequent annihilation and late-time decay of these heavy states yields (symmetric) dark matter as well as (asymmetric) standard model baryons. We study in detail the case of pure bino dark matter by augmenting the minimal supersymmetric standard model with vector-like chiral multiplets. In the parameter range where this mechanism is effective, the LHC can discover long-lived charged particles which were responsible for assimilating dark matter.

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  1. Asymmetric Dark Matter in SUSY with approximate $R-$symmetry

    hep-ph 2025-02 conditional novelty 6.0 of 10

    A supersymmetric model with approximate R-symmetry links the baryon asymmetry to a gravitino dark matter relic, predicting a 5 to 10 GeV gravitino and a multi-TeV sparticle spectrum.

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