Dissipation and Vertical Energy Transport in Radiation-Dominated Accretion Disks
arXiv:1103.5052 · doi:10.1088/0004-637X/733/2/110
Abstract
Standard models of radiation supported accretion disks generally assume that diffusive radiation flux is solely responsible for vertical heat transport. This requires that heat must be generated at a critical rate per unit volume if the disk is to be in hydrostatic and thermal equilibrium. This raises the question of how heat is generated and how energy is transported in MHD turbulence. By analysis of a number of radiation/MHD stratified shearing-box simulations, we show that the divergence of the diffusive radiation flux is indeed capped at the critical rate, but deep inside the disk, substantial vertical energy flux is also carried by advection of radiation. Work done by radiation pressure is a significant part of the energy budget, and much of this work is dissipated later through damping by radiative diffusion. We show how this damping can be measured in the simulations, and identify its physical origins. Radiative damping accounts for as much as tens of percent of the total dissipation, and is the only realistic physical mechanism for dissipation of turbulence that can actually be resolved in numerical simulations of accretion disks. Buoyancy associated with dynamo-driven, highly magnetized, nearly-isobaric nonlinear slow magnetosonic fluctuations is responsible for the radiation advection flux, and also explains the persistent periodic magnetic upwelling seen at all values of the radiation to gas pressure ratio. The intimate connection between radiation advection and magnetic buoyancy is the first example we know of in astrophysics in which a dynamo has direct impact on the global energetics of a system.
accepted for publication in The Astrophysical Journal
References in corpus (6)
- MHD simulations of the magnetorotational instability in a shearing box with zero net flux. II. The effect of transport coefficients
- Impact of dimensionless numbers on the efficiency of MRI-induced turbulent transport
- On the Magnetic Prandtl Number Behavior of Accretion Disks
- Thermodynamics of an Accretion Disk Annulus with Comparable Radiation and Gas Pressure
- Surface Structure in an Accretion Disk Annulus with Comparable Radiation and Gas Pressure
- Photon Bubbles and the Vertical Structure of Accretion Disks
Cited by in corpus (62)
- Foundations of Black Hole Accretion Disk Theory
- Intrinsic disc emission and the Soft X-ray Excess in AGN
- A Global Three Dimensional Radiation Magneto-hydrodynamic Simulation of Super-Eddington Accretion Disks
- General Relativistic Hydrodynamic Simulation of Accretion Flow from a Stellar Tidal Disruption
- Three-Dimensional General Relativistic Radiation Magnetohydrodynamical Simulation of Super-Eddington Accretion, using a new code HARMRAD with M1 Closure
- Super-Eddington Accretion Disks around Supermassive black Holes
- Global simulations of axisymmetric radiative black hole accretion disks in general relativity with a sub-grid magnetic dynamo
- Semi-implicit scheme for treating radiation under M1 closure in general relativistic conservative fluid dynamics codes
- Global Radiation Magneto-hydrodynamic Simulations of Sub-Eddington Accretion Disks around Supermassive Black Holes
- Local Radiation Hydrodynamic Simulations of Massive Star Envelopes at the Iron Opacity Peak
- Emergent Mesoscale Phenomena in Magnetized Accretion Disc Turbulence
- ASASSN-14li: A Model Tidal Disruption Event
- On the Thermal Stability of Radiation Dominated Accretion Disks
- X-ray Spectra from MHD Simulations of Accreting Black Holes
- An Algorithm for Radiation Magnetohydrodynamics Based on Solving the Time-dependent Transfer Equation
- Thin accretion disks are stabilized by a strong magnetic field
- Convection Causes Enhanced Magnetic Turbulence in Accretion Disks in Outburst
- Iron Opacity Bump Changes the Stability and Structure of Accretion Disks in Active Galactic Nuclei
- The existence of warm and optically thick dissipative coronae above accretion disks
- Probing gas disc physics with LISA: simulations of an intermediate mass ratio inspiral in an accretion disc
- Radiation Magneto-hydrodynamic Simulations of the Formation of Hot Accretion Disk Coronae
- High-Frequency and Type-C QPOs from Oscillating, Precessing Hot, Thick Flow
- Tidal Disruptions of Stars by Black Hole Remnants in Dense Star Clusters
- General Overview of Black Hole Accretion Theory
- Gas pile-up, gap overflow, and Type 1.5 migration in circumbinary disks: general theory
- On the Missing Energy Puzzle of Tidal Disruption Events
- Lense-Thirring precession in ULXs as a possible means to constrain the neutron star equation-of-state
- Dwarf Nova Outbursts with Magnetorotational Turbulence
- On rapid binary mass transfer -- I. Physical model
- 3D Radiation Hydrodynamic Simulations of Gravitational Instability in AGN Accretion Disks: Effects of Radiation Pressure
- Saturation of the MRI in Strongly Radiation Dominated Accretion Disks
- Magnetic Turbulence and Thermodynamics in the Inner Region of Protoplanetary Discs
- Magnetorotational turbulence in stratified shearing boxes with perfect gas equation of state and finite thermal diffusivity
- Looking for extra dimensions in the observed quasi-periodic oscillations of black holes
- Testing wind as an explanation for the spin problem in the continuum-fitting method
- Global Three-Dimensional Radiation Magnetohydrodynamic Simulations of Accretion onto a Stellar Mass Black Hole at Sub- and Near-critical Accretion Rates
- Tidal Disruptions of Main Sequence Stars -- V. The Varieties of Disruptions
- A Census of Quasar-Intrinsic Absorption in the Hubble Space Telescope Archive: Systems from High Resolution Echelle Spectra
- Convective Quenching of Field Reversals in Accretion Disc Dynamos
- A model of the steep power law spectra and high-frequency quasi-periodic oscillations in luminous black hole X-ray binaries
- The Structure and Spectral Features of a Thin Disk and Evaporation-Fed Corona in High-Luminosity AGNs
- Soft X-ray Extended Emissions of Short Gamma-Ray Bursts as Electromagnetic Counterparts of Compact Binary Mergers; Possible Origin and Detectability
- On Vertically Global, Horizontally Local Models for Astrophysical Disks
- The Effects of Magnetic Fields on the Dynamics of Radiation Pressure Dominated Massive Star Envelopes
- Linking soft excess in ultraluminous X-ray sources with optically thick wind driven by supercritical accretion
- Dynamo effects in magnetorotational turbulence with finite thermal diffusivity
- Vertical Structure and Coronal Power of Accretion Disks Powered by MRI Turbulence
- Breathing Oscillations in a Global Simulation of a Thin Accretion Disk
- Effects of local dissipation profiles on magnetized accretion disk spectra
- Thermal Stability in Turbulently Mixed Accretion Discs
- Global simulations of magnetorotational turbulence II: turbulent energetics
- A magnetic reconnection origin for the soft X-ray excess in AGN
- Bulk Comptonization by Turbulence in Accretion Disks
- Spiral structures and temperature distribution in the quiescent accretion disc of the cataclysmic binary V2051 Ophiuchi
- Spectral signature of oscillating slender tori surrounding Kerr black holes
- Gravitational Wave Heating of Stars and Accretion Disks
- MRI turbulence in vertically stratified accretion discs at large magnetic Prandtl numbers
- A simple framework for modelling the dependence of bulk Comptonization by turbulence on accretion disc parameters
- Magnetohydrodynamic convection in accretion discs
- Local Radiation MHD Instabilities in Magnetically Stratified Media
- Spectra and Structure of Accretion Disks with Nonzero Inner Torque
- Effects of Strong Photospheric Dissipation on the Spectra and Structure of Accretion Disks with Non-zero Inner Torque