IC 751: a new changing-look AGN discovered by NuSTAR
Abstract
We present the results of five NuSTAR observations of the type 2 active galactic nucleus (AGN) in IC 751, three of which were performed simultaneously with XMM-Newton or Swift/XRT. We find that the nuclear X-ray source underwent a clear transition from a Compton-thick () to a Compton-thin () state on timescales of months, which makes IC 751 the first changing-look AGN discovered by NuSTAR. Changes of the line-of-sight column density at a level are also found on a time-scale of hours (). From the lack of spectral variability on timescales of ks we infer that the varying absorber is located beyond the emission-weighted average radius of the broad-line region, and could therefore be related either to the external part of the broad-line region or a clumpy molecular torus. By adopting a physical torus X-ray spectral model, we are able to disentangle the column density of the non-varying absorber () from that of the varying clouds [], and to constrain that of the material responsible for the reprocessed X-ray radiation (). We find evidence of significant intrinsic X-ray variability, with the flux varying by a factor of five on timescales of a few months in the 2-10 and 10-50 keV band.
Cite
@article{arxiv.1602.00702,
title = {IC 751: a new changing-look AGN discovered by NuSTAR},
author = {C. Ricci and F. E. Bauer and P. Arevalo and S. Boggs and W. N. Brandt and F. E. Christensen and W. W. Craig and P. Gandhi and C. J. Hailey and F. A. Harrison and M. Koss and C. B. Markwardt and D. Stern and E. Treister and W. W. Zhang},
journal= {arXiv preprint arXiv:1602.00702},
year = {2016}
}
Comments
Accepted for publication in ApJ, 11 pages, 6 figures