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nIFTy cosmology: Galaxy/halo mock catalogue comparison project on clustering statistics.

Authors :
Chia-Hsun Chuang
Cheng Zhao
Prada, Francisco
Munari, Emiliano
Avila, Santiago
Izard, Albert
Kitaura, Francisco-Shu
Manera, Marc
Monaco, Pierluigi
Murray, Steven
Knebe, Alexander
Scóccola, Claudia G.
Yepes, Gustavo
Garcia-Bellido, Juan
Marín, Felipe A.
Müller, Volker
Skibba, Ramin
Crocce, Martin
Fosalba, Pablo
Gottlöber, Stefan
Source :
Monthly Notices of the Royal Astronomical Society. 9/1/2015, Vol. 452 Issue 1, p686-700. 15p.
Publication Year :
2015

Abstract

We present a comparison of major methodologies of fast generating mock halo or galaxy catalogues. The comparison is done for two-point (power spectrum and two-point correlation function in real and redshift space), and the three-point clustering statistics (bispectrum and three-point correlation function). The reference catalogues are drawn from the BigMultiDark N-body simulation. Both friend-of-friends (including distinct haloes only) and spherical over-density (including distinct haloes and subhalos) catalogues have been used with the typical number density of a large volume galaxy surveys. We demonstrate that a proper biasing model is essential for reproducing the power spectrum at quasi-linear and even smaller scales. With respect to various clustering statistics, a methodology based on perturbation theory and a realistic biasing model leads to very good agreement with N-body simulations. However, for the quadrupole of the correlation function or the power spectrum, only the method based on semi-N-body simulation could reach high accuracy (1 per cent level) at small scales, i.e. r < 25 h-1 Mpc or k > 0.15 h Mpc-1. Full N-body solutions will remain indispensable to produce reference catalogues. Nevertheless, we have demonstrated that the more efficient approximate solvers can reach a few per cent accuracy in terms of clustering statistics at the scales interesting for the large-scale structure analysis. This makes them useful for massive production aimed at covariance studies, to scan large parameter spaces, and to estimate uncertainties in data analysis techniques, such as baryon acoustic oscillation reconstruction, redshift distortion measurements, etc. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00358711
Volume :
452
Issue :
1
Database :
Academic Search Index
Journal :
Monthly Notices of the Royal Astronomical Society
Publication Type :
Academic Journal
Accession number :
109130211
Full Text :
https://doi.org/10.1093/mnras/stv1289