English

Cluster versus POTENT Density and Velocity Fields: Cluster Biasing and Omega

Astrophysics 2009-10-31 v1

Abstract

The density and velocity fields as extracted from the Abell/ACO clusters are compared to the corresponding fields recovered by the POTENT method from the Mark~III peculiar velocities of galaxies. In order to minimize non-linear effects and to deal with ill-sampled regions we smooth both fields using a Gaussian window with radii ranging between 1220\hmpc12 - 20\hmpc. The density and velocity fields within 70\hmpc70\hmpc exhibit similarities, qualitatively consistent with gravitational instability theory and a linear biasing relation between clusters and mass. The random and systematic errors are evaluated with the help of mock catalogs. Quantitative comparisons within a volume containing  ⁣12\sim\!12 independent samples yield \betacΩ0.6/bc=0.22±0.08\betac\equiv\Omega^{0.6}/b_c=0.22\pm0.08, where bcb_c is the cluster biasing parameter at 15\hmpc15\hmpc. If bc4.5b_c \sim 4.5, as indicated by the cluster correlation function, our result is consistent with Ω1\Omega \sim 1.

Keywords

Cite

@article{arxiv.astro-ph/9911046,
  title  = {Cluster versus POTENT Density and Velocity Fields: Cluster Biasing and Omega},
  author = {E. Branchini and I. Zehavi and M. Plionis and A. Dekel},
  journal= {arXiv preprint arXiv:astro-ph/9911046},
  year   = {2009}
}

Comments

18 pages, latex, 2 ps figures 6 gif figures. Accepted for pubblications in MNRAS

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