On the presence of ultra-fast outflows in the WAX sample of Seyfert galaxies
arXiv:1406.2645 · doi:10.1093/mnrasl/slu091
Abstract
The study of winds in active galactic nuclei (AGN) is of utmost importance as they may provide the long sought-after link between the central black hole and the host galaxy, establishing the AGN feedback. Recently, Laha et al. (2014) reported the X-ray analysis of a sample of 26 Seyferts observed with XMM-Newton, which are part of the so-called warm absorbers in X-rays (WAX) sample. They claim the non-detection of Fe K absorbers indicative of ultra-fast outflows (UFOs) in four observations previously analyzed by Tombesi et al. (2010). They mainly impute the Tombesi et al. detections to an improper modeling of the underlying continuum in the E=4-10 keV band. We therefore re-address here the robustness of these detections and we find that the main reason for the claimed non-detections is likely due to their use of single events only spectra, which reduces the total counts by 40%. Performing a re-analysis of the data in the whole E=0.3-10 keV energy band using their models and spectra including also double events, we find that the blue-shifted Fe K absorption lines are indeed detected at >99%. This work demonstrates the robustness of these detections in XMM-Newton even including complex model components such as reflection, relativistic lines and warm absorbers.
5 pages, 1 figure, accepted for publication in MNRAS
References in corpus (4)
- An XMM-Newton survey of broad iron lines in Seyfert galaxies
- The variable X-ray spectrum of Markarian 766 - I. Principal components analysis
- Fe K Emission and Absorption in the XMM-EPIC Spectrum of the Seyfert Galaxy IC 4329a
- The Variable X-ray Spectrum of Markarian 766 - II. Time-Resolved Spectroscopy
Cited by in corpus (5)
- Star-forming galaxies as the origin of diffuse high-energy backgrounds: Gamma-ray and neutrino connections, and implications for starburst history
- Detection of high velocity outflows in Seyfert 1 galaxy Mrk 590
- Discovery of an X-ray Quasar Wind Driving the Cold Gas Outflow in the Ultraluminous Infrared Galaxy IRAS F05189-2524
- Radiatively-driven black-hole winds revisited
- A broadband X-ray view of the NLSy1 1E 0754.6+392.8