arXiv · 1507.08972
Baryon Acoustic Oscillations from the SDSS DR10 galaxies angular correlation function
Abstract
The 2-point angular correlation function $w(θ)$ (2PACF), where $θ$ is the angular separation between pairs of galaxies, provides the transversal Baryon Acoustic Oscillation (BAO) signal almost model-independently. In this paper we use 409,337 luminous red galaxies in the redshift range $z = [0.440,0.555]$ obtained from the tenth data release of the Sloan Digital Sky Survey (SDSS DR10) to estimate $θ_{\rm{BAO}}(z)$ from the 2PACF at six redshift {shells}. Since noise and systematics can hide the BAO signature in the $w - θ$ plane, we also discuss some criteria to localize the acoustic bump. We identify two sources of model-dependence in the analysis, namely, the value of the acoustic scale from Cosmic Microwave Background (CMB) measurements and the correction in the $θ_{\rm{BAO}}(z)$ position due to projection effects. Constraints on the dark energy equation-of-state parameter w$(z)$ from the $θ_{\rm{BAO}}(z)$ diagram are derived, as well as from a joint analysis with current CMB measurements. We find that the standard $Λ$CDM model as well as some of its extensions are in good agreement with these $θ_{\rm{BAO}}(z)$ measurements.
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G. C. Carvalho, A. Bernui, M. Benetti, J. C. Carvalho, J. S. Alcaniz. 2016-03-03. Baryon Acoustic Oscillations from the SDSS DR10 galaxies angular correlation function. https://doi.org/10.1103/physrevd.93.023530
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