Published January 1, 2019
| Version v1
Journal article
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Rapid black hole growth at the dawn of the Universe: a super-Eddington quasar at z=6.6
Creators
- 1. Natl Tsing Hua Univ, Inst Astron, 101 Kuang Fu Rd, Hsinchu 30013, Taiwan
- 2. Acad Sinica, Inst Astron & Astrophys, Taipei 10617, Taiwan
- 3. Chinese Acad Sci, Natl Astron Observ, A20 Datun Rd, Beijing 100101, Peoples R China
- 4. Univ Durham, Ctr Extragalact Astron, Dept Phys, South Rd, Durham DH1 3LE, England
Description
We present the analysis of a new near-infrared (NIR) spectrum of a recently discovered z = 6.621 quasar PSO J006 + 39 in an attempt to explore the early growth of supermassive black holes (SMBHs). This NIR (rest-frame ultraviolet, UV) spectrum shows blue continuum slope and rich metal emission lines in addition to Ly alpha line. We utilize the Mg II line width and the rest-frame luminosity L-3000 angstrom to find the mass of SMBH (M-BH) to be similar to 10(8) M-circle dot, making this one of the lowest mass quasars at high redshift. The power-law slope index (alpha(lambda)) of the continuum emission is -2.94 +/- 0.03, significantly bluer than the slope of alpha(lambda) = -7/3 predicted from standard thin disc models. We fit the spectral energy distribution (SED) using a model which can fit local SMBHs, which includes warm and hot Comptonization powered by the accretion flow as well as an outer standard disc. The result shows that the very blue slope is probably produced by a small radial (similar to 230 gravitational radius, R-g) extent of the standard accretion disc. All plausible SED models require that the source is super-Eddington (L-bol/L-Edd greater than or similar to 9), so the apparently small disc may simply be the inner funnel of a puffed up flow, and clearly the SMBH in this quasar is in a rapid growth phase. We also utilize the rest-frame UV emission lines to probe the chemical abundance in the broad-line region (BLR) of this quasar. We find that this quasar has super solar metallicity through photoionization model calculations.
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