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The Sixth Data Release of the Sloan Digital Sky Survey

The Astrophysical Journal Supplement Series · 2008 · Vol. 175(2) · pp. 297–313
Jennifer Adelman-McCarthyMarcel A. AgüerosS. AllamCarlos Allende PrietoKurt S. AndersonScott F. AndersonJames AnnisNeta A. BahcallC. A. L. Bailer‐JonesI. K. BaldryJohn C. BarentineBruce A. BassettA. C. BeckerTimothy C. BeersEric F. BellAndreas A. BerlindMariangela BernardiMichael R. BlantonJohn J. BochanskiWilliam N. BoroskiJ. BrinchmannJ. BrinkmannRobert J. BrunnerTamás BudaváriSamuel CarlilesMichael A. CarrF. J. CastanderDavid CinabroR. J. CoolKevin R. CoveyIstván CsabaiCarlos E. CunhaJames R. A. DavenportB. DildayMamoru DoiDaniel J. EisensteinMichael L. EvansXiaohui FanDouglas P. FinkbeinerS. D. FriedmanJoshua A. FriemanM. FukugitaB. T. GänsickeEvalyn GatesBruce GillespieKarl GlazebrookJim GrayE. K. GrebelJames E. GunnVijay K. GurbaniPatrick B. HallPaul HardingMichael HarvanekSuzanne L. HawleyJ. J. E. HayesTimothy M. HeckmanJohn S. HendryRobert B. HindsleyChristopher M. HirataCraig J. HoganDavid W. HoggJoseph HydeShinichi IchikawaŽeljko IvezićSebastian JesterJennifer A. JohnsonA. M. JorgensenMario JurićS. KentR. KeßlerS. J. KleinmanG. R. KnappR. G. KronJ. KrzesińskiN. KuropatkinDonald Q. LambHubert LampeitlSvetlana LebedevaYoung Sun LeeR. French LegerSébastien LépineM. LimaH. LinDaniel C. LongCraig LoomisJ. LovedayRobert H. LuptonO. MalanushenkoViktor MalanushenkoRachel MandelbaumB. MargonJ. MarrinerDavid Martínez‐DelgadoTakahiko MatsubaraP. McGeheeTimothy A. McKayAvery MeiksinHeather MorrisonJeffrey A. MunnReiko NakajimaEric H. NeilsenHeidi Jo NewbergRobert C. NicholTom NicinskiM. A. Nieto‐SantistebanA. NittaSadanori OkamuraRussell OwenHiroaki OyaizuNikhil PadmanabhanKaike PanChangbom ParkJ. PeoplesJeffrey R. PierAdrian PopeNorbert PurgerM. Jordan RaddickP. Re FiorentinGordon T. RichardsM. RichmondAdam G. RiessHans‐Walter RixConstance M. RockosiMasao SakoDavid J. SchlegelDonald P. SchneiderM. R. SchreiberA. SchwopeUroš SeljakBranimir SesarE. SheldonK. ShimasakuT. SivaraniJ. A. SmithStephanie A. SneddenMatthias SteinmetzMichael A. StraussMark SubbaRaoYasushi SutoAlexander S. SzalayIstván SzapudiPaula SzkodyMax TegmarkAniruddha R. ThakarChristy TremontiD. L. TuckerAlan UomotoD. E. vanden BerkJan VandenbergS. VidrihMichael S. VogeleyW. VogesNicole P. VogtYogesh WadadekarDavid H. WeinbergAndrew A. WestSimon D. M. WhiteBrian C. WilhiteB. YannyD. R. YocumDonald G. YorkIdit ZehaviD. B. Zucker

Abstract

This paper describes the Sixth Data Release of the Sloan Digital Sky Survey. With this data release, the imaging of the northern Galactic cap is now complete. The survey contains images and parameters of roughly 287 million objects over 9583 deg², including scans over a large range of Galactic latitudes and longitudes. The survey also includes 1.27 million spectra of stars, galaxies, quasars, and blank sky (for sky subtraction) selected over 7425 deg². This release includes much more stellar spectroscopy than was available in previous data releases and also includes detailed estimates of stellar temperatures, gravities, and metallicities. The results of improved photometric calibration are now available, with uncertainties of roughly 1% in g, r, i, and z, and 2% in u, substantially better than the uncertainties in previous data releases. The spectra in this data release have improved wavelength and flux calibration, especially in the extreme blue and extreme red, leading to the qualitatively better determination of stellar types and radial velocities. The spectrophotometric fluxes are now tied to point-spread function magnitudes of stars rather than fiber magnitudes. This gives more robust results in the presence of seeing variations, but also implies a change in the spectrophotometric scale, which is now brighter by roughly 0.35 mag. Systematic errors in the velocity dispersions of galaxies have been fixed, and the results of two independent codes for determining spectral classifications and redshifts are made available. Additional spectral outputs are made available, including calibrated spectra from individual 15 minute exposures and the sky spectrum subtracted from each exposure. We also quantify a recently recognized underestimation of the brightnesses of galaxies of large angular extent due to poor sky subtraction; the bias can exceed 0.2 mag for galaxies brighter than r = 14 mag.

Galaxies: Formation, Evolution, PhenomenaStellar, planetary, and galactic studiesAstronomy and Astrophysical ResearchSkyAstrophysicsPhysicsGalaxyStarsRedshiftQuasarAstronomySpectral lineCalibration

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • National Aeronautics and Space Administration
  • Alfred P. Sloan Foundation
  • Princeton University
  • Ohio State University
  • University of Washington
  • Johns Hopkins University
  • University of Pittsburgh
  • Case Western Reserve University
  • Drexel University
  • Universität Basel
  • University of Portsmouth
  • New Mexico State University
  • Chinese Academy of Sciences
  • Max-Planck-Gesellschaft
  • Max-Planck-Institut für Astrophysik
  • Max-Planck-Institut für Astronomie
  • Science and Technology Facilities Council
  • U.S. Naval Observatory
  • Fermilab
  • Los Alamos National Laboratory
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References
The Sloan Digital Sky Survey Photometric Camera
The Astronomical Journal · 1998 · 1,570 citations
The Sloan Digital Sky Survey Photometric System
The Astronomical Journal · 1996 · 2,816 citations
Astrometric Calibration of the Sloan Digital Sky Survey
The Astronomical Journal · 2003 · 824 citations
The 2.5 m Telescope of the Sloan Digital Sky Survey
The Astronomical Journal · 2006 · 2,271 citations
Sloan Digital Sky Survey: Early Data Release
The Astronomical Journal · 2002 · 2,238 citations
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