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The Dark Universe: Primordial Black Hole $\leftrightharpoons$ Dark Graviton Gas Connection

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arxiv 2210.02475 v2 pith:2OWFHXWQ submitted 2022-10-05 hep-th astro-ph.COhep-ph

classification hep-thastro-ph.COhep-ph
keywords darkblackgravitonsdimensionalgravitonholesmasshole
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We study the possible correspondence between 5-dimensional primordial black holes and massive 5-dimensional KK gravitons as dark matter candidate within the recently proposed dark dimension scenario that addresses the cosmological hierarchy problem. First, we show that in the local universe a population of 5-dimensional black holes with $M_{\rm BH}\sim 7\times 10^{13}~{\rm g}$ would be practically indistinguishable from a KK tower of dark gravitons with $m_{\rm DM} \sim 50~{\rm keV}$. Second, we connect the mass increase of 5-dimensional black holes and the related temperature decrease with the cooling of the tower of massive spin-2 KK excitations of the graviton. The dark gravitons are produced at a mass $\sim 1 - 50~{\rm GeV}$ and the bulk of their mass shifts down to roughly $1 - 100~{\rm keV}$ today. The cooling of the system proceeds via decay to lighter gravitons without losing much total mass density, resembling the intra-tower decays that characterize the cosmological evolution of the dynamical dark matter framework. We associate the intra-tower decays of the graviton gas with the black hole growth through accretion. We also discuss that the primordial black hole $\leftrightharpoons$ dark graviton gas connection can be nicely explained by the bound state picture of black holes in terms of gravitons.

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Forward citations

Cited by 3 Pith papers

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  3. QCD Axion Dark Matter in the Dark Dimension

    hep-th 2024-12 conditional novelty 4.0 of 10

    A QCD axion with decay constant around 1e9 to 1e10 GeV, as predicted in the dark dimension scenario, can supply all dark matter if an ALP of mass about 1e-5 eV and decay constant about 1e11 GeV resonantly converts into it.

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