Baryon Acoustic Oscillations in the Sloan Digital Sky Survey Data Release 7 Galaxy Sample
Will J. Percival, Beth A. Reid, Daniel J. Eisenstein, Neta A. Bahcall,, Tamas Budavari, Joshua A. Frieman, Masataka Fukugita, James E. Gunn, Zeljko, Ivezic, Gillian R. Knapp, Richard G. Kron, Jon Loveday, Robert H. Lupton,, Timothy A. McKay, Avery Meiksin, Robert C. Nichol

TL;DR
This paper analyzes galaxy clustering in SDSS DR7 and 2dFGRS data to detect baryon acoustic oscillations, providing precise distance measurements that support the Lambda-CDM model and constrain cosmological parameters.
Contribution
First detection of BAO in SDSS DR7 galaxy data, with improved methodology and combined analysis yielding tight constraints on cosmological parameters.
Findings
BAO detected in SDSS DR7 and 2dFGRS data.
Measured distance ratio at z=0.275 with 2.7% accuracy.
Constraints on Omega_m and H_0 consistent with Lambda-CDM.
Abstract
The spectroscopic Sloan Digital Sky Survey (SDSS) Data Release 7 (DR7) galaxy sample represents the final set of galaxies observed using the original SDSS target selection criteria. We analyse the clustering of galaxies within this sample, including both the Luminous Red Galaxy (LRG) and Main samples, and also include the 2-degree Field Galaxy Redshift Survey (2dFGRS) data. Baryon Acoustic Oscillations are observed in power spectra measured for different slices in redshift; this allows us to constrain the distance--redshift relation at multiple epochs. We achieve a distance measure at redshift z=0.275, of r_s(z_d)/D_V(0.275)=0.1390+/-0.0037 (2.7% accuracy), where r_s(z_d) is the comoving sound horizon at the baryon drag epoch, D_V(z)=[(1+z)^2D_A^2cz/H(z)]^(1/3), D_A(z) is the angular diameter distance and H(z) is the Hubble parameter. We find an almost independent constraint on the…
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