English

Large-amplitude isothermal fluctuations and high-density dark-matter clumps

Astrophysics 2009-10-22 v1

Abstract

Large-amplitude isothermal fluctuations in the dark matter energy density, parameterized by Φδ\rhodm/\rhodm\Phi\equiv\delta\rhodm/\rhodm, are studied within the framework of a spherical collapse model. For Φ\ga1\Phi \ga 1, a fluctuation collapses in the radiation-dominated epoch and produces a dense dark-matter object. The final density of the virialized object is found to be ρF140Φ3(Φ+1)\rhoeq\rho_F \approx 140\, \Phi^3 (\Phi+1) \rhoeq, where \rhoeq\rhoeq is the matter density at equal matter and radiation energy density. This expression is valid for the entire range of possible values of Φ\Phi, both for Φ1\Phi \gg 1 and Φ1\Phi \ll 1. Some astrophysical consequences of high-density dark-matter clumps are discussed.

Keywords

Cite

@article{arxiv.astro-ph/9403011,
  title  = {Large-amplitude isothermal fluctuations and high-density dark-matter clumps},
  author = {Edward W. Kolb and Igor I. Tkachev},
  journal= {arXiv preprint arXiv:astro-ph/9403011},
  year   = {2009}
}

Comments

15 pages plus 3 figures (included at the end as a uuencoded postscript file), LaTeX, FNAL--PUB--94/055--A