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Baryon acoustic oscillations in the Ly<i>α</i>forest of BOSS DR11 quasars

Astronomy and Astrophysics · 2014 · Vol. 574 · pp. A59–A59
Timothée DelubacJulian BautistaNicolás G. BuscaJ. RichD. KirkbyS. BaileyAndreu Font-RiberaAnže SlosarKhee‐Gan LeeMatthew M. PieriJ.–Ch. HamiltonÉ. AubourgMichael BlomqvistJo BovyJ. BrinkmannW. CarithersKyle DawsonDaniel J. EisensteinSatya Gontcho A GontchoJean‐Paul KneibJean-Marc Le GoffDaniel MargalaJordi Miralda‐EscudéAdam D. MyersRobert C. NicholP. NoterdaemeRoss O’ConnellMatthew D. OlmsteadN. Palanque‐DelabrouilleIsabelle PârisPatrick PetitjeanNicholas P. RossGraziano RossiDavid J. SchlegelDonald P. SchneiderDavid H. WeinbergChristophe YècheDonald G. York

Abstract

We report a detection of the baryon acousticoscillation (BAO) feature in the flux-correlation function of the Lyα forest of high-redshift quasars with a statistical significance of five standard deviations. The study uses 137 562 quasars in the redshift range 2.1 ≤ z ≤ 3.5 from the data release 11 (DR11) of the Baryon Oscillation Spectroscopic Survey (BOSS) of SDSS-III. This sample contains three times the number of quasars used in previous studies. The measured position of the BAO peak determines the angular distance, DA(z = 2.34) and expansion rate, H(z = 2.34), both on a scale set by the sound horizon at the drag epoch, rd. We find DA/rd = 11.28 ± 0.65(1σ)+2.8-1.2 (2σ) and DH/rd = 9.18 ± 0.28(1σ) ± 0.6(2σ) where DH = c/H. The optimal combination, ~DH0.7DA0.3/rd is determined with a precision of ~2%. For the value rd = 147.4 Mpc, consistent with the cosmic microwave background power spectrum measured by Planck, we find DA(z = 2.34) = 1662 ± 96(1σ) Mpc and H(z = 2.34) = 222 ± 7(1σ) km s-1 Mpc-1. Tests with mock catalogs and variations of our analysis procedure have revealed no systematic uncertainties comparable to our statistical errors. Our results agree with the previously reported BAO measurement at the same redshift using the quasar-Lyα forest cross-correlation. The autocorrelation and cross-correlation approaches are complementary because of the quite different impact of redshift-space distortion on the two measurements. The combined constraints from the two correlation functions imply values of DA/rd that are 7% lower and 7% higher for DH/rd than the predictions of a flat ΛCDM cosmological model with the best-fit Planck parameters. With our estimated statistical errors, the significance of this discrepancy is ≈2.5σ.

Galaxies: Formation, Evolution, PhenomenaCosmology and Gravitation TheoriesAstrophysics and Cosmic PhenomenaPhysicsQuasarRedshiftAstrophysicsBaryonBaryon acoustic oscillationsCosmic microwave backgroundDark energyCosmologyGalaxy

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Alfred P. Sloan Foundation
  • Yale University
  • Vanderbilt University
  • Princeton University
  • Ohio State University
  • Harvard University
  • University of Washington
  • Johns Hopkins University
  • University of Arizona
  • Carnegie Mellon University
  • University of Portsmouth
  • New Mexico State University
  • York University
  • European Commission
  • Agence Nationale de la Recherche
  • Office of Science
  • College of Engineering, Michigan State University
  • Science and Technology Facilities Council
  • Brookhaven National Laboratory
  • Lawrence Berkeley National Laboratory
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Baryon acoustic oscillations in the Ly<i>α</i>forest of BOSS DR11 quasars · Scinovex