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The Sloan Digital Sky Survey Quasar Survey: Quasar Luminosity Function from Data Release 3

The Astronomical Journal · 2006 · Vol. 131(6) · pp. 2766–2787
Gordon T. RichardsMichael A. StraussXiaohui FanPatrick B. HallSebastian JesterDonald P. SchneiderD. E. vanden BerkChris StoughtonScott F. AndersonRobert J. BrunnerJim GrayJames E. GunnŽeljko IvezićMargaret K. KirklandG. R. KnappJ. LovedayAvery MeiksinAdrian PopeAlexander S. SzalayA. ThakarB. YannyDonald G. YorkJohn C. BarentineH. BrewingtonJ. BrinkmannM. FukugitaMichael HarvanekS. KentS. J. KleinmanJ. KrzesińskiDaniel C. LongRobert H. LuptonThomas NashEric H. NeilsenA. NittaDavid J. SchlegelStephanie A. Snedden

Abstract

We determine the number counts and z=0-5 luminosity function for a well-defined, homogeneous sample of quasars from the Sloan Digital Sky Survey (SDSS). We conservatively define the most uniform statistical sample possible, consisting of 15,343 quasars within an effective area of 1622 deg^2 that was derived from a parent sample of 46,420 spectroscopically confirmed broad-line quasars in the 5282 deg^2 of imaging data from SDSS Data Release Three. The sample extends from i=15 to i=19.1 at z<3 and to i=20.2 for z>3. The number counts and luminosity function agree well with the results of the 2dF QSO Survey, but the SDSS data probe to much higher redshifts than does the 2dF sample. The number density of luminous quasars peaks between redshifts 2 and 3, although uncertainties in the selection function in this range do not allow us to determine the peak redshift more precisely. Our best fit model has a flatter bright end slope at high redshift than at low redshift. For z<2.4 the data are best fit by a redshift-independent slope of beta = -3.1 (Phi(L) propto L^beta). Above z=2.4 the slope flattens with redshift to beta=-2.37 at z=5. This slope change, which is significant at a >5-sigma level, must be accounted for in models of the evolution of accretion onto supermassive black holes.

Galaxies: Formation, Evolution, PhenomenaAstrophysical Phenomena and ObservationsGamma-ray bursts and supernovaeRedshiftQuasarAstrophysicsPhysicsSkySupermassive black holeLuminosity functionRedshift surveyLuminosityAstronomy
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References
Atlas of quasar energy distributions
The Astrophysical Journal Supplement Series · 1994 · 1,663 citations
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 FIRST Survey: Faint Images of the Radio Sky at Twenty Centimeters
The Astrophysical Journal · 1995 · 2,751 citations
The 2.5 m Telescope of the Sloan Digital Sky Survey
The Astronomical Journal · 2006 · 2,271 citations
Secondary standard stars for absolute spectrophotometry
The Astrophysical Journal · 1983 · 2,667 citations
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