A quasi-spherical inner accretion flow in Seyfert galaxies ?
arXiv:astro-ph/0104273 · doi:10.1046/j.1365-8711.2001.04564.x
Abstract
We study a phenomenological model for the continuum emission of Seyfert galaxies. In this quasi-spherical accretion scenario, the central X-ray source is constituted by a hot spherical plasma region surrounded by spherically distributed cold dense clouds. The cold material is radiatively coupled with the hot thermal plasma. Assuming energy balance, we compute the hard X-ray spectral slope Gamma and reflection amplitude R. This simple model enables to reproduce both the range of observed hard X-ray spectral slopes, and reflection amplitude R. It also predicts a correlation between R and Gamma which is very close to what is observed. Most of the observed spectral variations from source to source, would be due to differences in the cloud covering fraction. If some internal dissipation process is active in the cold clouds, darkening effects may provide a simple explanation for the observed distributions of reflection amplitudes, spectral slopes, and UV to X-ray flux ratios.
12 pages, 9 figures, accepted for publication in MNRAS
Cited by in corpus (17)
- How the X-ray spectrum of a Narrow-Line Seyfert 1 galaxy may be reflection dominated
- X-ray irradiation in XTE J1817-330 and the inner radius of the truncated disc in the hard state
- XMM-Newton discovery of a sharp spectral feature at ~7 keV in the Narrow-Line Seyfert 1 galaxy 1H 0707-495
- Long-term variability of AGN at hard X-rays
- The X-ray Energy Dependence of the Relation between Optical and X-ray Emission in Quasars
- The INTEGRAL Complete Sample of Type 1 AGN
- On the X-ray spectra of luminous, inhomogeneous accretion flows
- Multiple X-ray reflection from ionized slabs
- The broad-band XMM-Newton and INTEGRAL spectra of bright type 1 Seyfert galaxies
- The High Energy Spectrum of NGC 4151
- Full radiative coupling in two-phase models for accreting black holes
- High redshift radio quiet quasars -- exploring parameter space of accretion models. Part II: patchy corona model
- Predictions for Fourier-resolved X-ray spectroscopy from the model of magnetic flare avalanches above an accretion disc with hot ionized skin
- Reprocessing of X-rays in AGN. I. Plane parallel geometry -- test of pressure equilibrium
- The iron lines as a tool for magnetic field estimations in non-flat accretion flows
- Does the Iron K Line of Active Galactic Nuclei Arise from the Cerenkov Line-like Radiation?
- Distinct accretion modes of Cygnus X-1 revealed from hard X-rays