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THE SDSS-IV EXTENDED BARYON OSCILLATION SPECTROSCOPIC SURVEY: OVERVIEW AND EARLY DATA

The Astronomical Journal · 2016 · Vol. 151(2) · pp. 44–44
Kyle DawsonJean‐Paul KneibWill J. PercivalShadab AlamFranco D. AlbaretiScott F. AndersonE. ArmengaudÉ. AubourgS. BaileyJulian BautistaAndreas A. BerlindMatthew A. BershadyFlorian BeutlerDmitry BizyaevMichael R. BlantonMichael BlomqvistA. BoltonJo BovyW. N. BrandtJ. BrinkmannJoel R. BrownsteinE. BurtinNicolás G. BuscaZheng CaiChia-Hsun ChuangNicolas ClercJohan ComparatFrances CopeRupert A. C. CroftI. Cruz-GonzálezL. da CostaMarie-Claude CousinouJeremy DarlingAxel de la MacorraSylvain de la TorreTimothée DelubacHélion du Mas des BourbouxT. DwellyAnne EaletDaniel J. EisensteinMichael EracleousS. EscoffierXiaohui FanA. FinoguenovAndreu Font-RiberaPeter M. FrinchaboyP. GaulmeA. GeorgakakisPaul GreenHong GuoJulien GuyShirley HoDiana HolderJoe HuehnerhoffTimothy A. HutchinsonYipeng JingEric JulloVikrant KambleKaren KinemuchiD. KirkbyFrancisco-Shu KitauraMark A. KlaeneRuss R. LaherDustin LangPierre LaurentJean-Marc Le GoffCheng LiYu LiangM. LimaQiufan LinWeipeng LinYen‐Ting LinDaniel C. LongBritt LundgrenNicholas MacDonaldM. A. G. MaiaElena MalanushenkoViktor MalanushenkoVivek MariappanCameron K. McBrideIan D. McGreerBrice MénardA. MerloniAndrés MezaAntonio D. Montero-DortaDemitri MunaAdam D. MyersK. NandraTracy NaugleJeffrey A. NewmanP. NoterdaemeP. NugentR. L. C. OgandoMatthew D. OlmsteadAudrey OravetzDaniel OravetzNikhil PadmanabhanN. Palanque‐DelabrouilleKaike PanJohn K. ParejkoIsabelle PârisJ. A. PeacockPatrick PetitjeanMatthew M. PieriAlice PisaniFrancisco PradaAbhishek PrakashAnand RaichoorBeth ReidJ. RichJ. RidlSergio Rodríguez-TorresA. Carnero RosellAshley J. RossGraziano RossiJohn J. RuanM. SalvatoConor SayresDonald P. SchneiderDavid J. SchlegelUroš SeljakHee‐Jong SeoBranimir SesarSarah ShanderaYiping ShuAnže SlosarF. SobreiraA. StreblyanskaN. SuzukiD. TaylorC. TaoJeremy L. TinkerRita TojeiroM. Vargas-MagañaYuting WangBenjamin Alan WeaverDavid H. WeinbergMartin WhiteW. M. Wood‐VaseyChristophe YècheZhongxu ZhaiCheng ZhaoGong‐Bo ZhaoZheng ZhengGuangtun ZhuHu Zou

Abstract

ABSTRACT In a six-year program started in 2014 July, the Extended Baryon Oscillation Spectroscopic Survey (eBOSS) will conduct novel cosmological observations using the BOSS spectrograph at Apache Point Observatory. These observations will be conducted simultaneously with the Time Domain Spectroscopic Survey (TDSS) designed for variability studies and the Spectroscopic Identification of eROSITA Sources (SPIDERS) program designed for studies of X-ray sources. In particular, eBOSS will measure with percent-level precision the distance-redshift relation with baryon acoustic oscillations (BAO) in the clustering of matter. eBOSS will use four different tracers of the underlying matter density field to vastly expand the volume covered by BOSS and map the large-scale-structures over the relatively unconstrained redshift range 0.6 < z < 2.2. Using more than 250,000 new, spectroscopically confirmed luminous red galaxies at a median redshift z = 0.72, we project that eBOSS will yield measurements of the angular diameter distance d A ( z ) to an accuracy of 1.2% and measurements of H ( z ) to 2.1% when combined with the z > 0.6 sample of BOSS galaxies. With ∼195,000 new emission line galaxy redshifts, we expect BAO measurements of d A ( z ) to an accuracy of 3.1% and H ( z ) to 4.7% at an effective redshift of z = 0.87. A sample of more than 500,000 spectroscopically confirmed quasars will provide the first BAO distance measurements over the redshift range 0.9 < z < 2.2, with expected precision of 2.8% and 4.2% on d A ( z ) and H ( z ), respectively. Finally, with 60,000 new quasars and re-observation of 60,000 BOSS quasars, we will obtain new Ly α forest measurements at redshifts z > 2.1; these new data will enhance the precision of d A ( z ) and H ( z ) at z > 2.1 by a factor of 1.44 relative to BOSS. Furthermore, eBOSS will provide improved tests of General Relativity on cosmological scales through redshift-space distortion measurements, improved tests for non-Gaussianity in the primordial density field, and new constraints on the summed mass of all neutrino species. Here, we provide an overview of the cosmological goals, spectroscopic target sample, demonstration of spectral quality from early data, and projected cosmological constraints from eBOSS.

Galaxies: Formation, Evolution, PhenomenaGamma-ray bursts and supernovaeAstrophysical Phenomena and ObservationsRedshiftPhysicsQuasarAstrophysicsBaryonBossGalaxySpectrographObservatorySpectral line

Funding

  • National Science Foundation
  • Smithsonian Institution
  • U.S. Department of Energy
  • National Aeronautics and Space Administration
  • Alfred P. Sloan Foundation
  • Yale University
  • Carnegie Institution of Washington
  • Vanderbilt University
  • Ohio State University
  • California Institute of Technology
  • University of Utah
  • University of Washington
  • Johns Hopkins University
  • Carnegie Mellon University
  • University of Notre Dame
  • University of Portsmouth
  • New Mexico State University
  • York University
  • Ministério da Ciência, Tecnologia e Inovação
  • Universidad Nacional Autónoma de México
  • Max-Planck-Institut für Astrophysik
  • Max-Planck-Institut für Astronomie
  • Instituto de Astrofísica de Canarias
  • Office of Science
  • Jet Propulsion Laboratory
  • University of California, Los Angeles
  • University of Colorado Boulder
  • Smithsonian Astrophysical Observatory
  • Science and Technology Facilities Council
  • Leibniz-Gemeinschaft
  • Lawrence Berkeley National Laboratory
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THE SDSS-IV EXTENDED BARYON OSCILLATION SPECTROSCOPIC SURVEY: OVERVIEW AND EARLY DATA · Scinovex