The 1.5 Ms Observing Campaign on IRAS 13224-3809: X-ray Spectral Analysis I
Abstract
We present a detailed spectral analysis of the recent 1.5\,Ms XMM-Newton observing campaign on the narrow line Seyfert 1 galaxy IRAS~132243809, taken simultaneously with 500\,ks of NuSTAR data. The X-ray lightcurve shows three flux peaks, registering at about 100 times the minimum flux seen during the campaign, and rapid variability with a time scale of kiloseconds. The spectra are well fit with a primary powerlaw continuum, two relativistic-blurred reflection components from the inner accretion disk with very high iron abundance, and a simple blackbody-shaped model for the remaining soft excess. The spectral variability is dominated by the power law continuum from a corona region within a few gravitational radii from the black hole. Additionally, blueshifted Ne \textsc{x}, Mg \textsc{xii}, Si \textsc{xiv} and S \textsc{xvi} absorption lines are identified in the stacked low-flux spectrum, confirming the presence of a highly ionized outflow with velocity up to and \,c. We fit the absorption features with \texttt{xstar} models and find a relatively constant velocity outflow through the whole observation. Finally, we replace the \texttt{bbody} and supersolar abundance reflection models by fitting the soft excess successfully with the extended reflection model \texttt{relxillD}, which allows for higher densities than the standard \texttt{relxill} model. This returns a disk electron density \,cm and lowers the iron abundance from with \,cm to .
Keywords
Cite
@article{arxiv.1804.00349,
title = {The 1.5 Ms Observing Campaign on IRAS 13224-3809: X-ray Spectral Analysis I},
author = {J. Jiang and M. L. Parker and A. C. Fabian and W. N. Alston and D. J. K. Buisson and E. M. Cackett and C. -Y. Chiang and T. Dauser and L. C. Gallo and J. A. García and F. A. Harrison and A. M. Lohfink and B. De Marco and E. Kara and J. M. Miller and G. Miniutti and C. Pinto and D. J. Walton and D. R. Wilkins},
journal= {arXiv preprint arXiv:1804.00349},
year = {2018}
}
Comments
18 pages, 14 figures. Accepted by MNRAS