The Contribution of AGN Accretion Disks to Hydrogen Reionization
arXiv:2112.06960 · doi:10.3847/1538-4357/ac4783
Abstract
We examine the contribution of high-redshift (z>6) active galactic nuclei (AGNs) to cosmic hydrogen reionization, by tracing the growth and ionizing output of the first generation of supermassive black holes (SMBHs). Our calculations are anchored to the observed population of z~6 quasars, and trace back the evolving spectral energy distributions (SEDs) of the accretion flows that power these early AGNs and consider a variety of growth histories, including super-Eddington accretion. Compared to a fixed-shape SED, the evolving thin disks can produce ionizing radiation that is higher by up to ~80%. Across a variety of SMBH growth scenarios, the contribution of AGNs to reionization is limited to late epochs (z<7), and remains sub-dominant compared to star-forming galaxies. This conclusion holds irrespective of the (still unknown) space density of low-luminosity z=6 AGNs, and for growth scenarios that allow super-Eddington accretion. The contribution of AGNs to reionization can extend to earlier epochs (z>8) in scenarios with relative slow SMBH mass growth, i.e., for low accretion rates and/or high spins. We finally demonstrate that our framework can reproduce the observed quasar proximity zone sizes, and that compact proximity zones around z=6 quasars can be explained by the late onset of super-Eddington accretion.
Resubmitted to ApJ, after addressing referee report
References in corpus (25)
- Array Programming with NumPy
- Cosmic Reionization and Early Star-Forming Galaxies: A Joint Analysis of New Constraints from Planck and Hubble Space Telescope
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- Model-independent evidence in favor of an end to reionization by z~6
- A Luminous Quasar at Redshift 7.642
- Faint AGNs at z>4 in the CANDELS GOODS-S field: looking for contributors to the reionization of the Universe
- Physical properties of 15 quasars at
- The Evolution of Black Hole Mass and Spin in Active Galactic Nuclei
- Line Emitting Galaxies Beyond a Redshift of 7: An Improved Method for Estimating the Evolving Neutrality of the Intergalactic Medium
- The first ultraviolet quasar stacked spectrum at z=2.4 from WFC3
- Super-Critical Growth of Massive Black Holes from Stellar-Mass Seeds
- A Significantly Neutral Intergalactic Medium Around the Luminous z=7 Quasar J0252-0503
- Active galactic nuclei at z ~ 1.5: I. Spectral energy distribution and accretion discs
- The UV Continuum of Quasars: Models and SDSS Spectral Slopes
- The cosmic growth of the active black hole population at 1<z<2 in zCOSMOS, VVDS and SDSS
- The deepest X-ray view of high-redshift galaxies: constraints on low-rate black-hole accretion
- Chasing the Tail of Cosmic Reionization with Dark Gap Statistics in the Ly Forest over
- The systematic search for active galactic nuclei in the Deep Field South
- On the Accretion Rates and Radiative Efficiencies of the Highest Redshift Quasars
- Detecting and Characterizing Young Quasars II: Four Quasars at with Lifetimes years
- Semi-analytic forecasts for JWST -- V. AGN luminosity functions and helium reionization at z = 2-7
- Estimating the effective lifetime of the quasar population from the composite proximity zone profile
- On the AGN nature of two UV bright sources at z_spec~5.5 in the CANDELS fields: an update of the AGN space density at M1450~-22.5
- X-ray properties of z>6.5 quasars
- Searching for Super-Eddington Quasars using a Photon Trapping Accretion Disc Model