The Second INTEGRAL AGN Catalogue
V. Beckmann, S. Soldi, C. Ricci, J. Alfonso-Garz\'on, T.J.-L., Courvoisier, A. Domingo, N. Gehrels, P. Lubinski, J. M. Mas-Hesse, A. A., Zdziarski

TL;DR
This paper analyzes INTEGRAL data for 199 AGN to study their hard X-ray properties, testing the unified model and revealing correlations between luminosity, black hole mass, and absorption characteristics.
Contribution
It provides the first comprehensive spectral and variability analysis of a large AGN sample in hard X-rays, supporting the unified model and identifying key correlations.
Findings
Seyfert 1 and 2 spectra are consistent within uncertainties.
Higher cut-off energies and lower luminosities in absorbed AGN.
A fundamental plane relates optical luminosity, X-ray luminosity, and black hole mass.
Abstract
The INTEGRAL mission provides a large data set for studying the hard X-ray properties of AGN and allows testing of the unified scheme for AGN. We present analysis of INTEGRAL IBIS/ISGRI, JEM-X, and OMC data for 199 AGN supposedly detected by INTEGRAL above 20 keV. The data analysed here allow a significant spectral extraction on 148 objects and an optical variability study of 57 AGN. The slopes of the hard X-ray spectra of Seyfert 1 and Seyfert~2 galaxies are found to be consistent within the uncertainties, whereas higher cut-off energies and lower luminosities are measured for the more absorbed / type 2 AGN. The intermediate Seyfert 1.5 objects exhibit hard X-ray spectra consistent with those of Seyfert 1. When applying a Compton reflection model, the underlying continua appear the same in Seyfert 1 and 2 with photon index 2, and the reflection strength is about R = 1, when assuming…
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