Abstract
We present a method to extract the redshift-space distortion β parameter in configuration space with a minimal set of cosmological assumptions. We show that a novel combination of the observed monopole and quadrupole correlation functions can remove efficiently the impact of mild nonlinearities and redshift errors. The method offers a series of convenient properties: it does not depend on the theoretical linear correlation function, the mean galaxy density is irrelevant, only convolutions are used, and there is no explicit dependence on linear bias. Analyses based on dark matter N-body simulations and Fisher matrix demonstrate that errors of a few percent on β are possible with a full-sky, 1 (h -1 Gpc)3 survey centered at a redshift of unity and with negligible shot noise. We also find a baryonic feature in the normalized quadrupole in configuration space that should complicate the extraction of the growth parameter from the linear theory asymptote, but that does not have a major impact on our method.
| Original language | English (US) |
|---|---|
| Article number | 131 |
| Journal | Astrophysical Journal |
| Volume | 757 |
| Issue number | 2 |
| DOIs | |
| State | Published - Oct 1 2012 |
Keywords
- cosmological parameters
- cosmology: observations
- cosmology: theory
- dark energy
- large-scale structure of universe
- methods: statistical
ASJC Scopus subject areas
- Astronomy and Astrophysics
- Space and Planetary Science
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