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Towards a new standard model for black hole accretion
Authors:Zdenka Kuncic  Geoffrey V Bicknell
Institution:(1) School of Physics, University of Sydney, Sydney, NSW, Australia, 2006;(2) Research School of Astronomy & Astrophysics, Australian National University, Cotter Rd., Weston, ACT, Australia, 2611
Abstract:We briefly review recent developments in black hole accretion disk theory, emphasizing the vital role played by magnetohydrodynamic (MHD) stresses in transporting angular momentum. The apparent universality of accretion-related outflow phenomena is a strong indicator that large-scale MHD torques facilitate vertical transport of angular momentum. This leads to an enhanced overall rate of angular momentum transport and allows accretion of matter to proceed at an interesting rate. Furthermore, we argue that when vertical transport is important, the radial structure of the accretion disk is modified at small radii and this affects the disk emission spectrum. We present a simple model demonstrating how energetic, magnetically-driven outflows modify the emergent disk emission spectrum with respect to that predicted by standard accretion disk theory. A comparison of the predicted spectra against observations of quasar spectral energy distributions suggests that mass accretion rates inferred using the standard disk model may be severely underestimated.
Keywords:Accretion  accretion disks  Black hole physics  (Magnetohydrodynamics:) MHD  Radiation mechanisms: general  Turbulence waves  Galaxies: active  X-rays: binaries
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