A 2% Distance to z=0.35 by Reconstructing Baryon Acoustic Oscillations - I : Methods and Application to the Sloan Digital Sky Survey
Nikhil Padmanabhan, Xiaoying Xu, Daniel J. Eisenstein, Richard Scalzo,, Antonio J. Cuesta, Kushal T. Mehta, Eyal Kazin

TL;DR
This paper demonstrates that applying an improved reconstruction technique to SDSS galaxy data sharpens the BAO feature, leading to a precise 1.9% distance measurement at z=0.35, the first such application in a galaxy survey.
Contribution
It introduces an updated reconstruction algorithm that accounts for survey geometry and redshift distortions, and applies it to SDSS data to improve BAO measurements.
Findings
Reconstruction reduces the nonlinear smoothing scale from 8.1 to 4.4 Mpc/h.
It increases the BAO detection significance from 3.3σ to 4.2σ.
Distance measurement error decreases from 3.5% to 1.9%.
Abstract
We apply the reconstruction technique to the clustering of galaxies from the SDSS DR7 LRG sample, sharpening the baryon acoustic oscillation (BAO) feature and achieving a 1.9% measurement of the distance to z=0.35. This is the first application of reconstruction of the BAO feature in a galaxy redshift survey. We update the reconstruction algorithm of Eisenstein et al, 2007 to account for the effects of survey geometry as well as redshift-space distortions and validate it on 160 LasDamas simulations. We demonstrate that reconstruction sharpens the BAO feature in the angle averaged galaxy correlation function, reducing the nonlinear smoothing scale \Sigma_nl from 8.1 Mpc/h to 4.4 Mpc/h. Reconstruction also significantly reduces the effects of redshift-space distortions at the BAO scale, isotropizing the correlation function. This sharpened BAO feature yields an unbiased distance estimate…
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