English

Velocity dispersion profile in dark matter halos

Astrophysics 2009-11-10 v1

Abstract

Numerous numerical studies indicate that dark matter halos show an almost universal radial density profile. The origin of the profile is still under debate. We investigate this topic and pay particular attention to the velocity dispersion profile. To this end we have performed high-resolution simulations with two independent codes, ART and {\sc Gadget}. The radial velocity dispersion can be approximated as function of the potential by σr2=a(Φ/Φout)κ(ΦoutΦ)\sigma_r^2 = a (\Phi / \Phi_{\rm{out}})^\kappa (\Phi_{\rm{out}} - \Phi), where Φout\Phi_{\rm{out}} is the outer potential of the halo. For the parameters aa and κ\kappa we find a=0.29±0.04a=0.29\pm0.04 and κ=0.41±0.03\kappa=0.41\pm0.03. We find that the power-law asymptote σ2Φκ\sigma^2 \propto \Phi^\kappa is valid out to much larger distances from the halo center than any power asymptote for the density profile ρrn\rho \propto r^{-n}. The asymptotic slope n(r0)n(r \to 0) of the density profile is related to the exponent κ\kappa via n=2κ/(1+κ)n=2\kappa/(1+\kappa). Thus the value obtained for κ\kappa from the available simulation data can be used to obtain an estimate of the density profile below presently resolved scales. We predict a continuously decreasing nn towards the halo center with the asymptotic value n0.58n \lesssim 0.58 at r=0r=0.

Keywords

Cite

@article{arxiv.astro-ph/0311083,
  title  = {Velocity dispersion profile in dark matter halos},
  author = {M. Hoeft and J. P. Muecket and S. Gottloeber},
  journal= {arXiv preprint arXiv:astro-ph/0311083},
  year   = {2009}
}

Comments

9 pages, 5 figures bw, accepted for publication in ApJ

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