Determining the covering factor of Compton-thick active galactic nuclei with NuSTAR
M. Brightman, M. Balokovic, D. Stern, P. Arevalo, D. R. Ballantyne, F., E. Bauer, S. E. Boggs, W. W. Craig, F. E. Christensen, A. Comastri, F., Fuerst, P. Gandhi, C. J. Hailey, F. A. Harrison, R. C. Hickox, M. Koss, S., LaMassa, S. Puccetti, E. Rivers, R. Vasudevan, D. J. Walton

TL;DR
This study uses NuSTAR X-ray observations to measure the covering factor of Compton-thick material in AGN, revealing a strong inverse relationship with intrinsic luminosity, and providing insights into the obscuring torus structure.
Contribution
First direct measurements of the covering factor of Compton-thick AGN using NuSTAR spectral analysis and torus models, showing its dependence on luminosity.
Findings
Covering factor ranges from 0.2 to 0.9 across the sample.
Covering factor decreases with increasing X-ray luminosity.
Results align with previous obscured fraction studies of local AGN.
Abstract
The covering factor of Compton-thick obscuring material associated with the torus in active galactic nuclei (AGN) is at present best understood through the fraction of sources exhibiting Compton-thick absorption along the line of sight ( cm) in the X-ray band, which reveals the average covering factor. Determining this Compton-thick fraction is difficult however, due to the extreme obscuration. With its spectral coverage at hard X-rays (10 keV), NuSTAR is sensitive to the AGN covering factor since Compton scattering of X-rays off optically thick material dominates at these energies. We present a spectral analysis of 10 AGN observed with NuSTAR where the obscuring medium is optically thick to Compton scattering, so called Compton-thick (CT) AGN. We use the torus models of Brightman & Nandra which predict the X-ray spectrum from reprocessing in a torus…
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