Measurement of Baryon Acoustic Oscillations in the Lyman-alpha Forest Fluctuations in BOSS Data Release 9
An\v{z}e Slosar, Vid Ir\v{s}i\v{c}, David Kirkby, Stephen Bailey,, Nicol\'as G. Busca, Timoth\'ee Delubac, James Rich, \'Eric Aubourg, Julian E., Bautista, Vaishali Bhardwaj, Michael Blomqvist, Adam S. Bolton, Jo Bovy, Joel, Brownstein, Bill Carithers, Rupert A. C. Croft

TL;DR
This paper detects and measures the BAO feature in the Lyman-alpha forest using BOSS DR9 data at redshift 2.4, providing constraints consistent with the standard LCDM model and testing cosmological parameters in a new redshift range.
Contribution
First detection of BAO in the Lyman-alpha forest at high redshift using BOSS DR9 data, with detailed analysis of systematic effects and constraints on cosmological parameters.
Findings
BAO feature detected at 3-5 sigma significance.
Constraints on isotropic and anisotropic dilation factors.
Results consistent with the standard LCDM model.
Abstract
We use the Baryon Oscillation Spectroscopic Survey (BOSS) Data Release 9 (DR9) to detect and measure the position of the Baryonic Acoustic Oscillation (BAO) feature in the three-dimensional correlation function in the Lyman-alpha forest flux fluctuations at a redshift z=2.4. The feature is clearly detected at significance between 3 and 5 sigma (depending on the broadband model and method of error covariance matrix estimation) and is consistent with predictions of the standard LCDM model. We assess the biases in our method, stability of the error covariance matrix and possible systematic effects. We fit the resulting correlation function with several models that decouple the broadband and acoustic scale information. For an isotropic dilation factor, we measure 100x(alpha_iso-1) = -1.6 ^{+2.0+4.3+7.4}_{-2.0-4.1-6.8} (stat.) +/- 1.0 (syst.) (multiple statistical errors denote 1,2 and 3…
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