Clustering of luminous red galaxies I: large scale redshift space distortions
arXiv:0807.2460 · doi:10.1111/j.1365-2966.2008.14281.x
Abstract
This is the first paper of a series where we study the clustering of LRG galaxies in the latest spectroscopic SDSS data release, DR6, which has 75000 LRG galaxies covering over 1 at . Here we focus on modeling redshift space distortions in $\xips$, the 2-point correlation in separate line-of-sight and perpendicular directions, on large scales. % and away from the line-of-sight. We use large mock simulations to study the validity of models and errors. We show that errors in the data are dominated by a shot-noise term that is 40% larger than the Poisson error commonly used. We first use the normalized quadrupole for the whole sample (mean z=0.34) to estimate , where is the linear velocity growth factor and is the linear bias parameter that relates galaxy to matter fluctuations on large scales. We next use the full $\xips$ plane to find (h=0.72) and the biased amplitude . For standard gravity, we can combine these measurements to break degeneracies and find , and . We present constraints for modified theories of gravity and find that standard gravity is consistent with data as long as . We also calculate the cross-correlation with WMAP5 and show how both methods to measure the growth history are complementary to constrain non-standard models of gravity. Finally, we show results for different redshift slices, including a prominent BAO peak in the monopole at different redshifts. (Abridged)
31 pages, 65 figures
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