X-ray absorption in distant type II QSOs
M. Krumpe (1), G. Lamer (1), A. Corral (2), A.D. Schwope (1), F.J., Carrera (2), X. Barcons (2), M. Page (3), S. Mateos (4), J.A. Tedds (4), M.G., Watson (4) ((1) Astrophysikalisches Institut Potsdam, Potsdam, Germany, (2), Instituto de Fisica de Cantabria Santander, Spain

TL;DR
This study analyzes X-ray spectra of distant type II QSOs to understand their absorption properties, revealing moderate absorption levels, no clear dependence on luminosity or redshift, and a prominent iron line in some cases.
Contribution
It provides a detailed spectral analysis of a well-defined sample of distant type II QSOs, optimizing fitting methods for low-count spectra and exploring absorption characteristics.
Findings
Most sources show moderate absorption (N_H=(2-10) x 10^22 cm^-2)
No clear correlation between absorption and redshift or luminosity
Stacked spectra reveal a prominent iron K-alpha line at ~6.6 keV
Abstract
We present the results of the X-ray spectral analysis of an XMM-Newton-selected type II QSO sample with z>0.5 and 0.5-10 keV flux of 0.3-33 x 10^{-14} erg/s/cm^2. The distribution of absorbing column densities in type II QSOs is investigated and the dependence of absorption on X-ray luminosity and redshift is studied. We inspected 51 spectroscopically classified type II QSO candidates from the XMM-Newton Marano field survey, the XMM-Newton-2dF wide angle survey (XWAS), and the AXIS survey to set-up a well-defined sample with secure optical type II identifications. Fourteen type II QSOs were classified and an X-ray spectral analysis performed. Since most of our sources have only ~40 X-ray counts (PN-detector), we carefully studied the fit results of the simulated X-ray spectra as a function of fit statistic and binning method. We determined that fitting the spectra with the…
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