Modelling the variability of the Fe K alpha line in accreting black holes
arXiv:astro-ph/0403442 · doi:10.1111/j.1365-2966.2004.07852.x
Abstract
The variability of the Fe K alpha line near 6.5 keV seems to be reduced compared to the variability of the hard X-rays which presumably drive the line emission. This is observed both in active galactic nuclei and galactic black hole binaries. We point out that such reduced variability, as well as lack of coherence between the variations of the line and the continuum, are a natural prediction of a propagation model of variability in the geometry of inner hot accretion flow. We compute detail model predictions of the variability characteristics which could be compared with current and future data. We also point out that the model requires a gradual disappearance of the cold disc, rather than a sharp transition from the cold disc to a hot flow.
7 pages, MNRAS, accepted
References in corpus (10)
- Magnetically Arrested Disk: An Energetically Efficient Accretion Flow
- Fluorescent iron lines as a probe of astrophysical black hole systems
- X-ray Fluctuation Power Spectral Densities of Seyfert 1 Galaxies
- Correlations between X-ray and radio spectral properties of accreting black holes
- X-ray continuum variability of MCG-6-30-15
- The scaling of the X-ray variability with black hole mass in AGN
- Variability in black hole accretion discs
- Long-Term X-ray Spectral Variability in Seyfert 1 Galaxies
- SAX J1808.4-3658 and the origin of X-ray variability in X-ray binaries and active galactic nuclei
- Simulations of X-ray spectral/timing properties in a propagation model of variability of accreting black holes
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- Fourier-Resolved Spectroscopy of AGN using XMM-Newton data: I. The 3-10 keV band results
- Modelling the energy dependencies of X-ray quasi-periodic oscillations in accreting compact objects
- Modeling time delays in the X-ray spectrum of the Seyfert galaxy MCG-6-30-15