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Title: The Pan-STARRS1 z > 5.6 Quasar Survey. III. The z ≈ 6 Quasar Luminosity Function
Abstract We present thez≈ 6 type-1 quasar luminosity function (QLF), based on the Pan-STARRS1 (PS1) quasar survey. The PS1 sample includes 125 quasars atz≈ 5.7–6.2, with −28 ≲M1450≲ −25. With the addition of 48 fainter quasars from the SHELLQs survey, we evaluate thez≈ 6 QLF over −28 ≲M1450≲ −22. Adopting a double power law with an exponential evolution of the quasar density (Φ(z) ∝ 10k(z−6);k= −0.7), we use a maximum likelihood method to model our data. We find a break magnitude of M * = 26.38 0.60 + 0.79 mag , a faint-end slope of α = 1.70 0.19 + 0.29 , and a steep bright-end slope of β = 3.84 1.21 + 0.63 . Based on our new QLF model, we determine the quasar comoving spatial density atz≈ 6 to be n ( M 1450 < 26 ) = 1.16 0.12 + 0.13 cGpc 3 . In comparison with the literature, we find the quasar density to evolve with a constant value ofk≈ −0.7, fromz≈ 7 toz≈ 4. Additionally, we derive an ionizing emissivity of ϵ 912 ( z = 6 ) = 7.23 1.02 + 1.65 × 10 22 erg s 1 Hz 1 cMpc 3 , based on the QLF measurement. Given standard assumptions, and the recent measurement of the mean free path by Becker et al. atz≈ 6, we calculate an Hiphotoionizing rate of ΓH I(z= 6) ≈ 6 × 10−16s−1, strongly disfavoring a dominant role of quasars in hydrogen reionization.  more » « less
Award ID(s):
1908284
PAR ID:
10492477
Author(s) / Creator(s):
; ; ; ; ; ; ; ; ; ; ;
Publisher / Repository:
The Astrophysical Journal
Date Published:
Journal Name:
The Astrophysical Journal
Volume:
943
Issue:
1
ISSN:
0004-637X
Page Range / eLocation ID:
67
Format(s):
Medium: X
Sponsoring Org:
National Science Foundation
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