The role of thermal conduction in magnetized viscous-resistive ADAFs
arXiv:0908.0325 · doi:10.1111/j.1365-2966.2009.15467.x
Abstract
Observations of the hot gas, which is surrounding Sgr A* and a few other nearby galactic nuclei, imply that mean free paths of electron and proton are comparable to gas capture radius. So, hot accretion flows likely proceed under week collision conditions. As a result thermal conduction by ions has a considerable contribution in transfer of the realized heat in accretion mechanisms. We study a 2D advective accretion disk bathed in a poloidal magnetic field of a central accretor in the presence of thermal conduction. We find self-similar solutions for an axisymmetric, rotating, steady, viscose-resistive, magnetized accretion flow. The dominant mechanism of energy dissipation is assumed to be turbulence viscosity and magnetic diffusivity due to magnetic field of the central accretor. We show that the global structure of ADAFs are sensitive to viscosity, advection and thermal conduction parameters. We discuss how radial flow, angular velocity and density of accretion flows may vary with the advection, thermal conduction and viscous parameters.
Accepted for Publication, MNRAS
References in corpus (5)
- Hot Accretion With Conduction: Spontaneous Thermal Outflows
- The Effects of Thermal Conduction on Radiatively-Inefficient Accretion Flows
- The Effects of Thermal Conduction on the ADAF with a Toroidal Magnetic Field
- Hot accretion with outflow and thermal conduction
- Self-Similar Solutions of Viscous-Resistive ADAFs With Poloidal Magnetic Fields
Cited by in corpus (8)
- Effects of anisotropic thermal conduction on wind properties in hot accretion flow
- Dynamics of Hot Accretion Flow with Thermal Conduction
- Role of thermal conduction in an advective accretion with bipolar outflows
- How does an asymmetric magnetic field change the vertical structure of a hot accretion flow?
- Stationary models of magnetized viscous tori around a Schwarzschild black hole
- Viscous-Resistive ADAF with a general Large-Scale Magnetic Field
- Self-similar solutions of viscous and resistive ADAFs with thermal conduction
- Anchoring polar magnetic field in a stationary thick accretion disk