Growth rate of cosmological perturbations at z ~ 0.1 from a new observational test
arXiv:1503.05945 · doi:10.1103/PhysRevLett.115.011301
Abstract
Spatial variations in the distribution of galaxy luminosities, estimated from redshifts as distance proxies, are correlated with the peculiar velocity field. Comparing these variations with the peculiar velocities inferred from galaxy redshift surveys is a powerful test of gravity and dark energy theories on cosmological scales. Using ~ 2 $\times$ 10$^{5}$ galaxies from the SDSS Data Release 7, we perform this test in the framework of gravitational instability to estimate the normalized growth rate of density perturbations f$Ï_{8}$ = 0.37 +/- 0.13 at z ~ 0.1, which is in agreement with the $Î$CDM scenario. This unique measurement is complementary to those obtained with more traditional methods, including clustering analysis. The estimated accuracy at z ~ 0.1 is competitive with other methods when applied to similar datasets.
4 pages, 2 figures, matches version accepted for publication in PRL