The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: measurement of the BAO and growth rate of structure of the emission line galaxy sample from the anisotropic power spectrum between redshift 0.6 and 1.1
Arnaud de Mattia, Vanina Ruhlmann-Kleider, Anand Raichoor, Ashley J., Ross, Am\'elie Tamone, Cheng Zhao, Shadab Alam, Santiago Avila, Etienne, Burtin, Julian Bautista, Florian Beutler, Jonathan Brinkmann, Joel R., Brownstein, Michael J. Chapman, Chia-Hsun Chuang, Johan Comparat

TL;DR
This paper measures the baryon acoustic oscillation scale and growth rate of structure using emission line galaxies from SDSS-IV, providing constraints on cosmological parameters at redshift 0.6 to 1.1, consistent with the standard cosmological model.
Contribution
First analysis of BAO and RSD in emission line galaxy sample from SDSS-IV at redshift 0.6-1.1, including modeling of survey variations and integral constraints.
Findings
Measured $D_V/r_{drag}$ at $z=0.845$ as 18.33 with uncertainties.
Estimated growth rate $f\sigma_8$ at $z=0.85$ as 0.289 with uncertainties.
Results agree with Planck-based flat $\Lambda$CDM model.
Abstract
We analyse the large-scale clustering in Fourier space of emission line galaxies (ELG) from the Data Release 16 of the Sloan Digital Sky Survey IV extended Baryon Oscillation Spectroscopic Survey. The ELG sample contains 173,736 galaxies covering 1,170 square degrees in the redshift range . We perform a BAO measurement from the post-reconstruction power spectrum monopole, and study redshift space distortions (RSD) in the first three even multipoles. Photometric variations yield fluctuations of both the angular and radial survey selection functions. Those are directly inferred from data, imposing integral constraints which we model consistently. The full data set has only a weak preference for a BAO feature (). At the effective redshift we measure , with the…
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