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Amplification of Cosmological Inhomogeneities by the QCD Transition

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arxiv astro-ph/9807257 v2 pith:4EOJHKYS submitted 1998-07-24 astro-ph gr-qchep-ph

Amplification of Cosmological Inhomogeneities by the QCD Transition

classification astro-ph gr-qchep-ph
keywords transitionpeaksdensityprimordialblackcoldcosmologicaldark
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The cosmological QCD transition affects primordial density perturbations. If the QCD transition is first order, the sound speed vanishes during the transition and density perturbations fall freely. For scales below the Hubble radius at the transition the primordial Harrison-Zel'dovich spectrum of density fluctuations develops large peaks and dips. These peaks grow with wave number for both the hadron-photon-lepton fluid and for cold dark matter. At the horizon scale the enhancement is small. This by itself does not lead to the formation of black holes at the QCD transition. The peaks in the hadron-photon-lepton fluid are wiped out during neutrino decoupling. For cold dark matter that is kinetically decoupled at the QCD transition (e.g., axions or primordial black holes) these peaks lead to the formation of CDM clumps of masses $10^{-20} M_\odot< M_{\rm clump} < 10^{-10} M_\odot$.

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Cited by 2 Pith papers

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  2. Primordial Black Holes as Dark Matter: Recent Developments

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    Primordial black holes in specific mass ranges could account for some or all dark matter while resolving structure-formation and seed problems in standard cosmology.