Accretion in Strong Gravity: From Galactic to Supermassive Black Holes
Abstract
The galactic black hole binary systems give an observational template showing how the accretion flow changes as a function of increasing mass accretion rate, or L/L_Edd. These data can be synthetised with theoretical models of the accretion flow to give a coherent picture of accretion in strong gravity, in which the major hard-soft spectral transition is triggered by a change in the nature and geometry of the inner accretion flow from a hot, optically thin plasma to a cool, optically thick accretion disc. However, a straightforward application of these models to AGN gives clear discrepancies in overall spectral shape. Either the underlying accretion model is wrong, despite its success in describing the Galactic systems and/or there is additional physics which breaks the simple scaling from stellar to supermassive black holes.
Keywords
Cite
@article{arxiv.astro-ph/0508494,
title = {Accretion in Strong Gravity: From Galactic to Supermassive Black Holes},
author = {Chris Done and Marek Gierlinski},
journal= {arXiv preprint arXiv:astro-ph/0508494},
year = {2009}
}
Comments
To appear in the proceedings of "From X-ray Binaries to Quasars: Black Hole Accretion on All Mass Scales" (Amsterdam, July 2004). Eds T.Maccarone, R.Fender, L.Ho. Corrected version: missing figure added