The Hard X-ray Spectrum as a Probe for Black-Hole Growth in Radio-Quiet Active Galactic Nuclei
Ohad Shemmer (1), W.N. Brandt (1), Hagai Netzer (2), Roberto Maiolino, (3), Shai Kaspi (2,4) ((1) PSU, (2) Tel Aviv U., (3) INAF - Roma, (4), Technion)

TL;DR
This study analyzes the hard X-ray spectra of luminous radio-quiet AGNs at high redshift, revealing correlations useful for estimating black hole properties and insights into their growth history.
Contribution
It introduces a method to estimate black hole mass and accretion rate from X-ray spectral properties in high-redshift AGNs, aiding understanding of black hole evolution.
Findings
Correlation between L/L_Edd and photon index Gamma.
Gamma and L_X can estimate L/L_Edd and M_BH with ~3x uncertainty.
Detected significant Compton reflection in luminous AGNs.
Abstract
We study the hard-X-ray spectral properties of ten highly luminous radio-quiet (RQ) active galactic nuclei (AGNs) at z=1.3-3.2, including new XMM-Newton observations of four of these sources. We find a significant correlation between the normalized accretion rate (L/L_Edd) and the hard-X-ray photon index (Gamma) for 35 moderate-high luminosity RQ AGNs including our ten highly luminous sources. Within the limits of our sample, we show that a measurement of Gamma and L_X can provide an estimate of L/L_Edd and black-hole (BH) mass (M_BH) with a mean uncertainty of a factor of <~3 on the predicted values of these properties. This may provide a useful probe for tracing the history of BH growth in the Universe, utilizing samples of X-ray-selected AGNs for which L/L_Edd and M_BH have not yet been determined systematically. It may prove to be a useful way to probe BH growth in distant…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena · Pulsars and Gravitational Waves Research
