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Lyα flux power spectrum and its covariance
Hu Zhan 1★ , Romeel Davé 2 , Daniel Eisenstein 2 and Neal Katz 3
  1 Department of Physics, University of California, Davis, CA 95616, USA   2 Steward Observatory, University of Arizona, Tucson, AZ 85721, USA   3 Astronomy Department, University of Massachusetts at Amherst, MA 01003, USA
Correspondence to   E-mail: zhan@physics.ucdavis.edu
Copyright 2005 RAS
KEYWORDS
methods: numerical • quasars: absorption lines • cosmology: theory • large-scale structure of Universe

ABSTRACT

Abstract
          1 INTRODUCTION
          2 SIMULATED LY  FORESTS
          3 MASS STATISTICS VERSUS FLUX STATISTICS
          4 COSMOLOGYREFERENCES

We analyse the flux power spectrum and its covariance using simulated Lyα forests. We find that pseudo-hydro techniques are good approximations of hydrodynamical simulations at high redshift. However, the pseudo-hydro techniques fail at low redshift because they are insufficient for characterizing some components of the low-redshift intergalactic medium, notably the warm–hot intergalactic medium. Hence, to use the low-redshift Lyα flux power spectrum to constrain cosmology, one would need realistic hydrodynamical simulations. By comparing (one-dimensional) mass statistics with flux statistics, we show that the non-linear transform between density and flux quenches the fluctuations so that the flux power spectrum is much less sensitive to cosmological parameters than the one-dimensional mass power spectrum. The covariance of the flux power spectrum is nearly Gaussian. As such, the uncertainties of the underlying mass power spectrum could still be large, even though the flux power spectrum can be precisely determined from a small number of lines of sight.


Accepted 2005 August 9. Received 2005 July 22; in original form 2005 March 21

DIGITAL OBJECT IDENTIFIER (DOI)
10.1111/j.1365-2966.2005.09504.x About DOI

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