Gravitational Lensing of the SDSS High-Redshift Quasars
arXiv:astro-ph/0203119 · doi:10.1086/342181
Abstract
We predict the effects of gravitational lensing on the color-selected flux-limited samples of z~4.3 and z>5.8 quasars, recently published by the Sloan Digital Sky Survey (SDSS). Our main findings are: (i) The lensing probability should be 1-2 orders of magnitude higher than for conventional surveys. The expected fraction of multiply-imaged quasars is highly sensitive to redshift and the uncertain slope of the bright end of the luminosity function, beta_h. For beta_h=2.58 (3.43) we find that at z~4.3 and i*<20.0 the fraction is ~4% (13%) while at z~6 and z*<20.2 the fraction is ~7% (30%). (ii) The distribution of magnifications is heavily skewed; sources having the redshift and luminosity of the SDSS z>5.8 quasars acquire median magnifications of med(mu_obs)~1.1-1.3 and mean magnifications of <mu_obs>~5-50. Estimates of the quasar luminosity density at high redshift must therefore filter out gravitationally-lensed sources. (iii) The flux in the Gunn-Peterson trough of the highest redshift (z=6.28) quasar is known to be f_lambda<3 10^-19 erg/sec/cm^2/Angstrom. Should this quasar be multiply imaged, we estimate a 40% chance that light from the lens galaxy would have contaminated the same part of the quasar spectrum with a higher flux. Hence, spectroscopic studies of the epoch of reionization need to account for the possibility that a lens galaxy, which boosts the quasar flux, also contaminates the Gunn-Peterson trough. (iv) Microlensing by stars should result in ~1/3 of multiply imaged quasars in the z>5.8 catalog varying by more than 0.5 magnitudes over the next decade. The median equivalent width would be lowered by ~20% with respect to the intrinsic value due to differential magnification of the continuum and emission-line regions.
27 pages, 10 figures. Expansion on the discussion in astro-ph/0203116. Replaced with version accepted for publication in ApJ
References in corpus (3)
Cited by in corpus (56)
- An Observational Determination of the Bolometric Quasar Luminosity Function
- Formation of the First Supermassive Black Holes
- A Survey of z>5.7 Quasars in the Sloan Digital Sky Survey II: Discovery of Three Additional Quasars at z>6
- The Assembly of the First Massive Black Holes
- A Survey of z>5.7 Quasars in the Sloan Digital Sky Survey IV: Discovery of Seven Additional Quasars
- Gravitationally lensed quasars and supernovae in future wide-field optical imaging surveys
- A Survey of z>5.7 Quasars in the Sloan Digital Sky Survey III: Discovery of Five Additional Quasars
- Binary Quasars in the Sloan Digital Sky Survey: Evidence for Excess Clustering on Small Scales
- Probing the Ionization State of the Universe at z>6
- A 3x10^9 solar mass black hole in the quasar SDSS J1148+5251 at z=6.41
- The Subaru Deep Field Project: Lyman Emitters at Redshift of 6.6
- Early Growth and Efficient Accretion of Massive Black Holes at High Redshift
- Finding the Electromagnetic Counterparts of Cosmological Standard Sirens
- Effect of gravitational lensing on the distribution of gravitational waves from distant binary black hole mergers
- A Physical Model for the Luminosity Function of High-Redshift Quasars
- The Evolution of a Mass-Selected Sample of Early-Type Field Galaxies
- Observations and Theoretical Implications of the Large Separation Lensed Quasar SDSS J1004+4112
- Quasars as probes of the submillimetre cosmos at z>5: I. Preliminary SCUBA photometry
- Astrophysical Effects of Scalar Dark Matter Miniclusters
- Metal Absorption Lines as Probes of the Intergalactic Medium Prior to the Reionization Epoch
- The Discovery of a Gravitationally Lensed Quasar at z = 6.51
- The Formation of the First Massive Black Holes
- Effects of Triaxiality on the Statistics of Large-Separation Gravitational Lenses
- Imaging of SDSS z>6 quasar fields: gravitational lensing, companion galaxies and the host dark matter halos
- Improved Constraints on The Neutral Intergalactic Hydrogen Surrounding Quasars at Redshifts z>6
- Euclid preparation: V. Predicted yield of redshift 7<z<9 quasars from the wide survey
- Faint AGN and the Ionizing Background
- First results from the Canada-France High-z Quasar Survey: Constraints on the z=6 quasar luminosity function and the quasar contribution to reionization
- A Snapshot Survey for Gravitational Lenses Among z>=4.0 Quasars: I. The z>5.7 Sample
- Radio continuum imaging of FIR luminous QSOs at z>6
- Effects of Ellipticity and Shear on Gravitational Lens Statistics
- High redshift quasars and the supermassive black hole mass budget: constraints on quasar formation models
- A Constraint on the Gravitational Lensing Magnification and Age of the Redshift z=6.28 Quasar SDSS 1030+0524
- A Rapid Microlensing Event in the Q0957+561 A,B Gravitational Lens System
- Environments of z>5 quasars: searching for protoclusters at submillimetre wavelengths
- Constraining the Redshift z=6 Quasar Luminosity Function Using Gravitational Lensing
- High-resolution radio imaging of the most distant radio quasar SDSS J0836+0054
- Radio structure of the most distant radio-detected quasar at the ten milli- arcsecond scale
- A Snapshot Survey for Gravitational Lenses Among z>=4.0 Quasars: II. Constraints on the 4.0<z<4.5 Quasar Population
- Revisiting the Lensed Fraction of High-Redshift Quasars
- Gravitational lensing magnification without multiple imaging
- Gravitational Lenses as High-Resolution Telescopes
- A Mock Catalog of Gravitationally Lensed Quasars for the LSST Survey
- SDSS J094604.90+183541.8: A Gravitationally Lensed Quasar at z=4.8
- The Formation and Evolution of the First Massive Black Holes
- Statistics of Quasars Multiply Imaged by Galaxy Clusters
- Pure Density Evolution of the Ultraviolet Quasar Luminosity Function at
- The Multi-Band Magnification Bias for Gravitational Lenses
- A model for galaxy-galaxy strong lensing statistics in surveys
- The shallow slope of the z~6 quasar luminosity function: limits from the lack of multiple image gravitational lenses
- Reality or Mirage? Observational Test and Implications for the Claimed Extremely Magnified Quasar at
- Are Two z~6 Quasars Gravitationally Lensed ?
- Galaxies as High-Resolution Telescopes
- Strong Lensing by Subhalos in the Dwarf-Galaxy Mass Range II: Detection Probabilities
- Detecting and Characterizing Young Quasars. III. The Impact of Gravitational Lensing Magnification
- Cusped Mass Density Profiles and Magnification Ratios of Double Image Gravitational Lenses