Dramatic X-ray spectral variability of a Compton-thick type-1 QSO at $z\sim 1$
Abstract
We report on the discovery of a dramatic X-ray spectral variability event observed in a broad line type-1 QSO. The XMM-Newton spectrum from the year 2000 is characterized by an unobscured power-law spectrum with photon index of , a column density of , and no prominent reflection component. Five years later, Chandra captured the source in a heavily-obscured, reflection-dominated state. The observed X-ray spectral variability could be caused by a Compton-thick cloud with eclipsing the direct emission of the hot corona, implying an extreme variation never before observed in a type-1 QSO. An alternative scenario is a corona that switched off in between the observations. In addition, both explanations require a significant change of the X-ray luminosity prior to the obscuration or fading of the corona and/or a change of the relative geometry of the source/reflector system. Dramatic X-ray spectral variability of this kind could be quite common in type-1 QSOs, considering the relatively few datasets in which such an event could have been identified. Our analysis implies that there may be a population of type-1 QSOs which are Compton-thick in the X-rays when observed at any given time.
Cite
@article{arxiv.1808.05207,
title = {Dramatic X-ray spectral variability of a Compton-thick type-1 QSO at $z\sim 1$},
author = {Torben Simm and Johannes Buchner and Andrea Merloni and Kirpal Nandra and Yue Shen and Thomas Erben and Alison L. Coil and Christopher N. A. Willmer and Donald P. Schneider},
journal= {arXiv preprint arXiv:1808.05207},
year = {2018}
}
Comments
7 pages, 4 figures, to be published in MNRAS