The clustering of galaxies in the completed SDSS-III Baryon Oscillation Spectroscopic Survey: Baryon Acoustic Oscillations in Fourier-space
Florian Beutler, Hee-Jong Seo, Ashley J. Ross, Patrick McDonald, Shun, Saito, Adam S. Bolton, Joel R. Brownstein, Chia-Hsun Chuang, Antonio J., Cuesta, Daniel J. Eisenstein, Andreu Font-Ribera, Jan Niklas Grieb, Nick, Hand, Francisco-Shu Kitaura, Chirag Modi, Robert C. Nichol

TL;DR
This paper analyzes the BAO signal in the final BOSS galaxy dataset using Fourier-space methods, providing precise measurements of cosmological distances and expansion rates across three redshift bins, consistent with Planck predictions.
Contribution
First Fourier-space analysis of BOSS DR12 BAO data with density reconstruction and separation of line-of-sight and angular modes for improved cosmological constraints.
Findings
Achieved 1-1.6% constraints on angular diameter distance D_A(z)
Achieved 2.3-2.9% constraints on H(z)
Detected BAO signal at 8 sigma significance in each redshift bin
Abstract
We analyse the Baryon Acoustic Oscillation (BAO) signal of the final Baryon Oscillation Spectroscopic Survey (BOSS) data release (DR12). Our analysis is performed in Fourier-space, using the power spectrum monopole and quadrupole. The dataset includes galaxies over the redshift range . We divide this dataset into three (overlapping) redshift bins with the effective redshifts , and . We demonstrate the reliability of our analysis pipeline using N-body simulations as well as MultiDark-Patchy mock catalogues, which mimic the BOSS-DR12 target selection. We apply density field reconstruction to enhance the BAO signal-to-noise ratio. By including the power spectrum quadrupole we can separate the line-of-sight and angular modes, which allows us to constrain the angular diameter distance and the Hubble parameter…
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