The impact of accretion disk winds on the X-ray spectrum of AGN: Part 1 - XSCORT
arXiv:0706.1885 · doi:10.1111/j.1365-2966.2007.12336.x
Abstract
(abridged) The accretion disk in AGN is expected to produce strong outflows, in particular a UV-line driven wind. Despite providing a good fit to the data, current spectral models of the X-ray spectrum of AGN observed through an accretion disk wind are ad-hoc in their treatment of the properties of the wind material. In order to address these limitations we adopt a numerical computation method that links a series of radiative transfer calculations, incorporating the effect of a global velocity field in a self-consistent manner (XSCORT). We present a series of example spectra from the XSCORT code that allow us to examine the shape of AGN X-ray spectra seen through a wind, for a range of velocity and density distributions, total column densities and initial ionization parameters. These detailed spectral models clearly show considerable complexity and structure that is strongly affected by all these factors. The presence of sharp features in the XSCORT spectra contrasts strongly with both the previous models and with the smooth nature of the observed X-ray spectra of AGN with soft X-ray excesses, demonstrating that accretion disk winds are unlikely to be the origin of this mysterious spectral feature. The most significant parameter affecting the presence of the sharp features in the models is the terminal velocity of the wind. Increasing the terminal velocity of the absorbing material to ~c, and hence dramatically increasing the velocity dispersion across the wind, could potentially remove these features resulting in a spectrum similar to the previous models. Such a fast moving outflow cannot be associated with a radiatively driven accretion disk wind, however the presence of a highly relativistic jet may provide an origin for such material.
14 pages, 9 figures (colour), Accepted for publication in MNRAS (13th Aug 2007). Several significant changes to the text from v1
References in corpus (10)
- The magnetic nature of disk accretion onto black holes
- Confirming the high velocity outflow in PG 1211+143
- An absorption origin for the soft excess in Seyfert 1 AGN
- Energy-dependent variability and the origin of the soft X-ray excess in AGN
- Can the soft excess in AGN originate from disc reflection?
- What is the origin of the soft excess in AGN?
- The iron K feature in Narrow Line Seyfert 1's: evidence for a P Cygni profile?
- A Thermal Wind Model for GRO J1655-40
- Failed disk winds; a physical origin for the soft X-ray excess?
- The messy environment of Mrk 6
Cited by in corpus (18)
- An absorption origin for the X-ray spectral variability of MCG-6-30-15
- X-ray Absorption and Reflection in Active Galactic Nuclei
- Multi-dimensional modelling of X-ray spectra for AGN accretion-disk outflows
- The XMM-Newton view of AGN with intermediate mass black holes
- The origin of ultra-fast outflows in AGN: Monte-Carlo simulations of the wind in PDS 456
- Modelling the Extreme X-ray Spectrum of IRAS 13224-3809
- UV line driven disc wind as the origin of ultrafast outflows in AGN
- Suzaku observations of Markarian 335: evidence for a distributed reflector
- On the importance of special relativistic effects in modelling ultra-fast outflows
- Multiwavelength campaign on Mrk 509. XIII. Testing ionized-reflection models on Mrk 509
- Reflection dominated X-ray spectra of Narrow Line Seyfert 1 Galaxies: Mrk 478 and EXO 1346.2+2645
- Tell-Tale Spectral Signatures of MHD-driven Ultra-Fast Outflows in AGNs
- Speed limits for radiation driven SMBH winds
- Funnel wall jets and the nature of the soft X-ray excess
- Spectral and Time Series Analyses of the Seyfert 1 AGN: Zw 229.015
- The contribution of bulk Comptonization to the soft X-ray excess in AGN
- Multiphase Powerful Outflows Detected in High-z Quasars
- XMM-Newton and Swift Observations of the Seyfert 1 AGN NGC 5940