Self-similar structure of the magnetized radiation-dominated accretion disks
arXiv:astro-ph/0505570 · doi:10.1111/j.1365-2966.2005.09202.x
Abstract
We investigate the effects of a large-scale magnetic field with open field lines on the steady-state structure of a radiation-dominated accretion disk, using self-similarity technique. The disk is supposed to be turbulent and possesses an effective viscosity and an effective magnetic diffusivity. We consider the extreme case in which the generated energy due to viscous and magnetic dissipation is balanced by the advection cooling. While the magnetic field outside of the disk is treated in a phenomenological way, the internal field is determined self-consistently. Magnetized and nonmagnetized solutions have the same radial dependence, irrespective of the values of the input parameters. Generally, our self-similar solutions are very sensitive to the viscosity or diffusivity coefficients. For example, the density and the rotation velocity increase when the viscosity coefficient decreases. The gas rotates with sub-Keplerian angular velocity with a factor less than unity which depends on the magnetic field configuration. Magnetic field significantly reduce disk thickness, however, tends to increase the radial velocity comparing to the nonmagnetic self-similar solutions.
accepted by MNRAS
References in corpus (2)
Cited by in corpus (14)
- Hot accretion flow in black hole binaries: a link connecting X-rays to the infrared
- Self-Similar Solutions for ADAF with Toroidal Magnetic Fields
- Hyperaccreting Disks around Magnetars for Gamma-Ray Bursts: Effects of Strong Magnetic Fields
- Colours of black holes: infrared flares from the hot accretion disc in XTE J1550-564
- Iron line profiles and self-shadowing from relativistic thick accretion discs
- The Effect of Toroidal Magnetic Field on Thickness of a Viscose-Resistive Hot Accreting Flow
- Structure of Advection-Dominated Accretion Disks with Outflows: Role of Toroidal Magnetic Field
- Self-similar structure of magnetized ADAFs and CDAFs
- Time Dependence of Advection Dominated Accretion Flow with a Toroidal Magnetic Field
- Radiation Spectrum of a Magnetized Supercritical Accretion Disc with Thermal Conduction
- New Analytical Formulae for Optically-Thin Accretion Flows
- A class of self-gravitating, magnetized accretion disks
- Structure of ADAFs in a general large-Scale B-field: The role of wind and thermal conduction
- Hydrodynamical wind on magnetized Accretion Flows with Convection