English

Halo Model Analysis of Cluster Statistics

Astrophysics 2011-05-12 v3

Abstract

We use the halo model formalism to provide expressions for cluster abundances and bias, as well as estimates for the correlation matrix between these observables. Off-diagonal elements due to scatter in the mass tracer scaling with mass are included, as are observational effects such as biases/scatter in the data, detection rates (completeness), and false detections (purity). We apply the formalism to a hypothetical volume limited optical survey where the cluster mass tracer is chosen to be the number of member galaxies assigned to a cluster. Such a survey can strongly constrain σ8\sigma_8 (Δσ80.05\Delta\sigma_8\approx 0.05), the power law index α\alpha where <Ngalm>=1+(m/M1)α<N_{gal}|m>= 1+(m/M_1)^\alpha (Δα0.03\Delta\alpha\approx0.03), and perhaps even the Hubble parameter (Δh0.07\Delta h\approx 0.07). We find cluster abundances and bias not well suited for constraining Ωm\Omega_m or the amplitude M1M_1. We also find that without bias information σ8\sigma_8 and α\alpha are degenerate, implying constraints on the former are strongly dependent on priors used for the latter and vice-versa. The degeneracy stems from an intrinsic scaling relation of the halo mass function, and hence it should be present regardless of the mass tracer used in the survey.

Keywords

Cite

@article{arxiv.astro-ph/0401578,
  title  = {Halo Model Analysis of Cluster Statistics},
  author = {Eduardo Rozo and Scott Dodelson and Joshua A. Frieman},
  journal= {arXiv preprint arXiv:astro-ph/0401578},
  year   = {2011}
}

Comments

27 pages, 11 figures, references added

R2 v1 2026-07-22T08:34:08.637Z