English

Biasing and high-order statistics from the SSRS2

Astrophysics 2007-05-23 v1

Abstract

We analyze different volume-limited samples extracted from the Southern Sky Redshift Survey (SSRS2), using counts-in-cells to compute the Count Probability Distribution Function (CPDF).From the CPDF we derive volume-averaged correlation functions to fourth order and the normalized skewness and kurtosis S3=ξ3ˉ/ξ2ˉ2S_3 = \bar{\xi_3}/\bar{\xi_2}^2 and S4=ξ4ˉ/ξ2ˉ3S_4=\bar{\xi_4}/\bar{\xi_2}^3. We find that the data satisfies the hierarchical relations in the range 0.3\lsimξ2ˉ\lsim100.3 \lsim \bar{\xi_2} \lsim 10. In this range, we find S3S_3 to be scale-independent with a value of 1.8\sim 1.8, in good agreement with the values measured from other optical redshift surveys probing different volumes, but significantly smaller than that inferred from the APM angular catalog. In addition, the measured values of S3S_3 do not show a significant dependence on the luminosity of the galaxies considered. This result is supported by several tests of systematic errors that could affect our measures and estimates of the cosmic variance determined from mock catalogs extracted from N-body simulations. This result is in marked contrast to what would be expected from the strong dependence of the two-point correlation function on luminosity in the framework of a linear biasing model. We discuss the implications of our results and compare them to some recent models of the galaxy distribution which address the problem of bias.

Keywords

Cite

@article{arxiv.astro-ph/9809080,
  title  = {Biasing and high-order statistics from the SSRS2},
  author = {C. Benoist and A. Cappi and L. N. da Costa and S. Maurogordato and F. R. Bouchet and R. Schaeffer},
  journal= {arXiv preprint arXiv:astro-ph/9809080},
  year   = {2007}
}

Comments

50 pages, 15 figures, ApJ, accepted for publication

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