Clustering of High Redshift () Quasars from the Sloan Digital Sky Survey
arXiv:astro-ph/0702214 · doi:10.1086/513517
Abstract
(Abridged) We study the two-point correlation function of a uniformly selected sample of 4,426 luminous optical quasars with redshift selected over 4041 deg from the Fifth Data Release of the Sloan Digital Sky Survey. For a real-space correlation function of the form , the fitted parameters in comoving coordinates are Mpc and , over a scale range Mpc. Thus high-redshift quasars are appreciably more strongly clustered than their counterparts, which have a comoving clustering length Mpc. Dividing our sample into two redshift bins: and , and assuming a power-law index , we find a correlation length of Mpc for the former, and Mpc for the latter. Following Martini & Weinberg, we relate the clustering strength and quasar number density to the quasar lifetimes and duty cycle. Using the Sheth & Tormen halo mass function, the quasar lifetime is estimated to lie in the range Myr for quasars with ; and Myr for quasars with . The corresponding duty cycles are for the lower redshift bin and for the higher redshift bin. The minimum mass of halos in which these quasars reside is for quasars with and for quasars with .
To appear in AJ; 20 emulateapj pages; supplemental materials can be found at http://www.astro.princeton.edu/~yshen/highz_qso_clustering/qso_clustering.htm
References in corpus (1)
Cited by in corpus (5)
- Biases in Virial Black Hole Masses: An SDSS Perspective
- The Sloan Digital Sky Survey Quasar Catalog IV. Fifth Data Release
- Correlation of CMB with large-scale structure: I. ISW Tomography and Cosmological Implications
- A Survey of z~6 Quasars in the SDSS Deep Stripe: I. a Flux-Limited Sample at z_{AB}<21
- Quasar Proximity Zones and Patchy Reionization