A growth-rate indicator for Compton-thick active galactic nuclei
M. Brightman, A. Masini, D. R. Ballantyne, M. Balokovi\'c, W. N., Brandt, C.-T. Chen, A. Comastri, D. Farrah, P. Gandhi, F. A. Harrison, C., Ricci, D. Stern, D. J. Walton

TL;DR
This study demonstrates that the X-ray spectral index {} can reliably indicate the growth rate of Compton-thick AGN by recovering intrinsic parameters through torus modeling, extending the {}-{\u03bb}$_{Edd}$ relation to obscured, low-mass black holes.
Contribution
It provides the first evidence that the {}-{\u03bb}$_{Edd}$ correlation holds for Compton-thick AGN using high-energy X-ray data and torus models, supporting {} as a growth-rate indicator.
Findings
Significant {}-{}$_{Edd}$ correlation in Compton-thick AGN.
Torus modeling recovers intrinsic spectral parameters.
Extension of the {}-{\u03bb}$_{Edd}$ relation to low-mass black holes.
Abstract
Due to their heavily obscured central engines, the growth rate of Compton-thick (CT) active galactic nuclei (AGN) is difficult to measure. A statistically significant correlation between the Eddington ratio, {\lambda}, and the X-ray power-law index, {\Gamma}, observed in unobscured AGN offers an estimate of their growth rate from X-ray spectroscopy (albeit with large scatter). However, since X-rays undergo reprocessing by Compton scattering and photoelectric absorption when the line-of-sight to the central engine is heavily obscured, the recovery of the intrinsic {\Gamma} is challenging. Here we study a sample of local, predominantly Compton-thick megamaser AGN, where the black hole mass, and thus Eddington luminosity, are well known. We compile results on X-ray spectral fitting of these sources with sensitive high-energy (E> 10 keV) NuSTAR data, where X-ray torus models which…
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