The clustering of galaxies in the SDSS-III Baryon Oscillation Spectroscopic Survey: Baryon Acoustic Oscillations in the Data Release 9 Spectroscopic Galaxy Sample
Lauren Anderson, Eric Aubourg, Stephen Bailey, Dmitry Bizyaev, Michael, Blanton, Adam S. Bolton, J. Brinkmann, Joel R. Brownstein, Angela Burden,, Antonio J. Cuesta, Luiz N. A. da Costa, Kyle S. Dawson, Roland de Putter,, Daniel J. Eisenstein, James E. Gunn, Hong Guo

TL;DR
This paper reports precise measurements of galaxy clustering and BAO features from the SDSS-III BOSS survey, providing a key distance measurement at redshift 0.57 that supports a flat Lambda-CDM universe.
Contribution
It presents the largest galaxy sample for BAO detection at this redshift and achieves the most precise galaxy-based distance measurement to date.
Findings
BAO features detected at 5σ in correlation function and power spectrum
Distance to z=0.57 measured as 2094 ± 34 Mpc
Supports flat universe with cosmological constant
Abstract
We present measurements of galaxy clustering from the Baryon Oscillation Spectroscopic Survey (BOSS), which is part of the Sloan Digital Sky Survey III (SDSS-III). These use the Data Release 9 (DR9) CMASS sample, which contains 264,283 massive galaxies covering 3275 square degrees with an effective redshift z=0.57 and redshift range 0.43 < z < 0.7. Assuming a concordance Lambda-CDM cosmological model, this sample covers an effective volume of 2.2 Gpc^3, and represents the largest sample of the Universe ever surveyed at this density, n = 3 x 10^-4 h^-3 Mpc^3. We measure the angle-averaged galaxy correlation function and power spectrum, including density-field reconstruction of the baryon acoustic oscillation (BAO) feature. The acoustic features are detected at a significance of 5\sigma in both the correlation function and power spectrum. Combining with the SDSS-II Luminous Red Galaxy…
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