The Faint End of the Quasar Luminosity Function at z~4
Eilat Glikman (1,2), Milan Bogosavljevic (1), S. G. Djorgovski (1),, Daniel Stern (3), Arjun Dey (4), Buell T. Jannuzi (4), Ashish Mahabal (1)

TL;DR
This study measures the faint end of the quasar luminosity function at z~4, revealing a steeper slope than previously thought, and assesses quasars' role in ionizing the early universe.
Contribution
It provides the first measurement of the faint quasar luminosity function at z~4, combining deep survey data with SDSS quasars to determine the luminosity function parameters.
Findings
Faint-end slope beta ~ -2.3 to -2.7, steeper than at z~3.
Quasars can produce enough ultraviolet radiation to ionize the intergalactic medium at z~4.
The luminosity function is effectively a single power-law without a well-defined break.
Abstract
We have conducted a spectroscopic survey to find faint quasars (-26.0 < M_{1450} < -22.0) at redshifts z=3.8-5.2 in order to measure the faint end of the quasar luminosity function at these early times. Using available optical imaging data from portions of the NOAO Deep Wide-Field Survey and the Deep Lens Survey, we have color-selected quasar candidates in a total area of 3.76 deg^2. Thirty candidates have R <= 23 mags. We conducted spectroscopic followup for 28 of our candidates and found 23 QSOs, 21 of which are reported here for the first time, in the 3.74 < z <5.06 redshift range. We estimate our survey completeness through detailed Monte Carlo simulations and derive the first measurement of the density of quasars in this magnitude and redshift interval. We find that the binned luminosity function is somewhat affected by the K-correction used to compute the rest-frame absolute…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Statistical and numerical algorithms
