Reprocessed emission line profiles from dense clouds in geometrically thick accretion engines
arXiv:astro-ph/0009263 · doi:10.1046/j.1365-8711.2001.04333.x
Abstract
The central engines of active galactic nuclei (AGN) contain cold, dense material as well as hot X-ray emitting gas. The standard paradigm for the engine geometry is a cold thin disc sandwiched between hot X-ray coronae. Strong support for this geometry in Seyferts comes from the study of fluorescent iron line profiles, although the evidence is not ubiquitously air tight. The thin disc model of line profiles in AGN and in X-ray binaries should be bench marked against other plausible possibilities. One proposed alternative is an engine consisting of dense clouds embedded in an optically thin, geometrically thick X-ray emitting engine. This model is further motivated by studies of geometrically thick engines such as advection dominated accretion flows (ADAFs). Here we compute the reprocessed iron line profiles from dense clouds embedded in geometrically thick, optically thin X-ray emitting discs near a Schwarzchild black hole. We consider a range of cloud distributions and disc solutions, including ADAFs, pure radial infall, and bipolar outflows. We find that such models can reproduce line profiles similar to those from geometrically thin, optically thick discs and might help alleviate some of the problems encountered from the latter.
9 Pages LaTex, + Figs, submitted to MNRAS
References in corpus (6)
- Broad iron lines in Active Galactic Nuclei
- Convection-Dominated Accretion Flows
- Self-Similar Accretion Flows with Convection
- A cloud model of active galactic nuclei: the iron K-alpha line diagnostics
- X-ray Line Diagnostics of Hot Accretion Flows around Black Holes
- The profile of an emission line from relativistic outflows around a black hole
Cited by in corpus (8)
- Hot Accretion Flows Around Black Holes
- An extended scheme for fitting X-ray data with accretion disk spectra in the strong gravity regime
- Lens-Aided Multi-Angle Spectroscopy (LAMAS) Reveals Small-Scale Outflow Structure in Quasars
- Iron line profiles and self-shadowing from relativistic thick accretion discs
- Iron line profiles from black hole accretion discs with spiral velocity structure
- Star-disc interactions in a galactic centre and oblateness of the inner stellar cluster
- Iron K-alpha Fluorescent Line Profiles from Spiral Accretion Flows in AGNs
- The iron lines as a tool for magnetic field estimations in non-flat accretion flows