Black hole accretion discs
arXiv:1505.02172 · doi:10.1007/978-3-662-52859-4_1
Abstract
This is an introduction to models of accretion discs around black holes. After a presentation of the non-relativistic equations describing the structure and evolution of geometrically thin accretion discs we discuss their steady-state solutions and compare them to observation. Next we describe in detail the thermal-viscous disc instability model and its application to dwarf novae for which it was designed and its X-ray irradiated-disc version which explains the soft X--ray transients, i.e. outbursting black-hole low-mass X-ray binaries. We then turn to the role of advection in accretion flows onto black holes illustrating its action and importance with a toy model describing both ADAFs and slim discs. We conclude with a presentation of the general-relativistic formalism describing accretion discs in the Kerr space-time.
41 pages, 11 figures, Chapter 1 in: "Astrophysics of Black Holes - From fundamental aspects to latest developments", Ed. Cosimo Bambi, Springer: Astrophysics and Space Science Library 440 (2016). Minor errors corrected
References in corpus (9)
- Super-critically accreting stellar-mass black holes as ultraluminous X-ray sources
- A Global Three Dimensional Radiation Magneto-hydrodynamic Simulation of Super-Eddington Accretion Disks
- Masses, Beaming and Eddington Ratios in Ultraluminous X-ray Sources
- Slim disks around Kerr black holes revisited
- Stability of helium accretion discs in ultracompact binaries
- Convection Causes Enhanced Magnetic Turbulence in Accretion Disks in Outburst
- The viscosity parameter alpha and the properties of accretion disc outbursts in close binaries
- Star formation in accretion discs : from the Galactic Center to Active Galactic Nuclei
- X-ray Transients: Hyper- or Hypo-Luminous?
Cited by in corpus (33)
- Ultraluminous X-ray sources
- On the charge of the Galactic centre black hole
- A new physical interpretation of optical and infrared variability in quasars
- The Growth Efficiency of High-Redshift Black Holes
- XRBcats: Galactic Low Mass X-ray Binary Catalogue
- The origin of the Ultraluminous X-ray Sources
- No magnetars in ULXs
- The Unusual Broadband X-ray Spectral Variability of NGC 1313 X-1 seen with XMMNewton, Chandra and NuSTAR
- Nature of the Extreme Ultraluminous X-ray Sources
- The ultraluminous X-ray source bubble in NGC 5585
- Black Hole Continuum Spectra as a Test of General Relativity: Quadratic Gravity
- Hydrodynamical wind on vertically self-gravitating ADAFs in the presence of toroidal magnetic field
- A decades-long fast-rise-exponential-decay flare in low-luminosity AGN NGC 7213
- Dynamical formation of Black Hole Low-Mass X-Ray Binaries in the field - an alternative to common envelope
- VVV-WIT-08: the giant star that blinked
- Formation and Evolution of Accreting Compact Objects
- Accreting Black Holes
- Axially Symmetric Accretion of Fractal Medium onto Rotating Black Holes and the emergence of the Acoustic Manifold
- Simulations of radiation driven winds from Keplerian discs
- The effects of toroidal magnetic field on the vertical structure of hot accretion flows
- Optical variability modeling of newly identified blazar candidates behind Magellanic Clouds
- The influence of large scale magnetic field in the structure of supercritical accretion flow with outflow
- Spectral variability studies in Active Galactic Nuclei: Exploring continuum and emission line regions in the age of LSST and JWST
- Electromagnetic signatures of white dwarf collisions in AGN discs
- The local stability of the magnetized advection-dominated discs with the radial viscous force
- The influence of outflow in supercritical accretion flows
- Influence of matter geometry on shocked flows-I: Accretion in the Schwarzschild metric
- Bridging the Gap: OPTICAM Reveals the Hidden Spin of the WZ Sge Star GOTO 065054.49+593624.51
- The effect of thermal winds on the outbursts evolution of LMXB systems
- Time dependence of advection dominated accretion flow around a rotating compact object
- Accretion in Radiative Equipartition (AiRE) Disks
- Real-time High-Quality Rendering of Non-Rotating Black Holes
- Long-term quasi-periodicity of 4U 1636-536 resulting from accretion disc instability