Probing variability patterns of the Fe K line complex in bright nearby AGNs
B. De Marco, K. Iwasawa, M. Cappi, M. Dadina, F. Tombesi, G. Ponti, A., Celotti, G. Miniutti

TL;DR
This study analyzes the variability patterns of the Fe K line complex in bright nearby AGNs using XMM-Newton data, revealing significant, relativistically influenced spectral features and their temporal changes.
Contribution
It provides the first systematic mapping of Fe K complex variability in bright AGNs, confirming the presence of energy-shifted features and their rapid variability with high confidence.
Findings
Red- and blue-shifted Fe K features observed in 30 out of 72 observations.
Significant line variability detected in 26 observations on 6-30 ks timescales.
Variability distribution peaks at high significance, indicating relativistic accretion flow origins.
Abstract
The unprecedented sensitivity of current X-ray telescopes allows for the first time to address the issue of the Fe K line complex variability patterns in bright, nearby AGNs. We examine XMM-Newton observations of the brightest sources of the FERO sample of radio-quiet type 1 AGNs with the aim of characterizing the temporal behaviour of Fe K complex features. A systematic mapping of residual flux above and below the continuum in the 4-9 keV range is performed in the time vs energy domain, with the purpose of identifying interesting spectral features in the three energy bands: 5.4-6.1 keV, 6.1-6.8 keV and 6.8-7.2 keV, corresponding respectively to the redshifted, rest frame and blueshifted or highly ionized Fe Kalpha line bands. The variability significance is assessed by extracting light curves and comparing them with MonteCarlo simulations. The time-averaged profile of the Fe K complex…
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