English

Galaxy Clusters in the Hubble Volume Simulations

Astrophysics 2007-05-23 v1

Abstract

We report on analyses of cluster samples obtained from the Hubble Volume Simulations. These simulations, an Ω=1\Omega=1 model named τ\tauCDM and a flat low Ω\Omega model with a cosmological constant (Λ\LambdaCDM), comprise the largest computational efforts to date in numerical cosmology. We investigate the presence of massive galaxy clusters at z0.8z\approx 0.8. The τ\tauCDM model fails to form clusters at such a redshift. However, due to the small number of observed clusters around z0.8z\approx 0.8 and the uncertainties in the determinations of their masses, this conclusion still is somewhat preliminary. We produce cluster catalogs at z=0z=0 for both cosmologies and investigate their two--point correlation function ξ\xi. We show that the relationship between the mean density of subsamples of clusters, expressed via their mean separation dcd_{\rm c}, and the correlation length r0r_0, defined through ξ(r0)=1\xi(r_0) = 1, is not linear but turns over gently for large dcd_{\rm c}. An analytic prediction by Mo & White (1996) overpredicts r0r_0. The results from the analysis of the APM cluster data by Croft et al. (1997) are nicely matched by the Λ\LambdaCDM model.

Keywords

Cite

@article{arxiv.astro-ph/9808257,
  title  = {Galaxy Clusters in the Hubble Volume Simulations},
  author = {Joerg M. Colberg and Simon D. M. White and Thomas J. MacFarland and Adrian Jenkins and Carlos S. Frenk and F. R. Pearce and August E. Evrard and H. M. P. Couchman and George Efstathiou and John A. Peacock and Peter A. Thomas},
  journal= {arXiv preprint arXiv:astro-ph/9808257},
  year   = {2007}
}

Comments

LaTex: 4 pages, 1 figure, includes conf_iap.sty style file. To appear in proceedings of The 14th IAP Colloquium: Wide Field Surveys in Cosmology, held in Paris, 1998 May 26-30, eds. S.Colombi, Y.Mellier

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