Angular Momentum Transport in Protoplanetary and Black-Hole Accretion Disks: The Role of Parasitic Modes in the Saturation of MHD Turbulence
arXiv:0908.1791 · doi:10.1088/0004-637X/716/2/1012
Abstract
The magnetorotational instability (MRI) is considered a key process for driving efficient angular momentum transport in astrophysical disks. Understanding its non-linear saturation constitutes a fundamental problem in modern accretion disk theory. The large dynamical range in physical conditions in accretion disks makes it challenging to address this problem only with numerical simulations. We analyze the concept that (secondary) parasitic instabilities are responsible for the saturation of the MRI. Our approach enables us to explore dissipative regimes that are relevant to astrophysical and laboratory conditions that lie beyond the regime accessible to current numerical simulations. We calculate the spectrum and physical structure of parasitic modes that feed off the fastest, exact (primary) MRI mode when its amplitude is such that the fastest parasitic mode grows as fast as the MRI. We argue that this "saturation" amplitude provides an estimate of the magnetic field that can be generated by the MRI before the secondary instabilities suppress its growth significantly. Recent works suggest that the saturation amplitude of the MRI depends mainly on the magnetic Prandtl number. Our results suggest that, as long as viscous effects do not dominate the fluid dynamics, the saturation level of the MRI depends only on the Elsasser number . We calculate the ratio between the stress and the magnetic energy density, , associated with the primary MRI mode. We find that for Kelvin-Helmholtz modes are responsible for saturation and , while for tearing modes prevail and . Several features of MRI simulations in accretion disks surrounding young stars and compact objects can be interpreted in terms of our findings.
11 figures, 16 pages, uses emulateapj, updated to match published version in ApJ
References in corpus (23)
- 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
- Experimental observation and characterization of the magnetorotational instability
- Semi-global simulations of the magneto-rotational instability in core collapse supernovae
- Angular Momentum Transport in Accretion Disks: Scaling Laws in MRI-driven Turbulence
- Turbulent Convection in Stellar Interiors. II. The Velocity Field
- On the Magnetic Prandtl Number Behavior of Accretion Disks
- Aspect ratio dependence in magnetorotational instability shearing box simulations
- Simulations of Magnetorotational Turbulence with a Higher-Order Godunov Scheme
- MRI channel flows and their parasites
- On the Saturation of the Magnetorotational Instability via Parasitic Modes
- Observation of magnetocoriolis waves in a liquid metal Taylor-Couette experiment
- The signature of the magnetorotational instability in the Reynolds and Maxwell stress tensors in accretion discs
- Viscous, Resistive Magnetorotational Modes
- Empirical relation between angular momentum transport and thermal-to-magnetic pressure ratio in shearing box simulations
- A Local Model for Angular Momentum Transport in Accretion Disks Driven by the Magnetorotational Instability
- The fundamental difference between shear alpha viscosity and turbulent magnetorotational stresses
- A weakly nonlinear analysis of the magnetorotational instability in a model channel flow
- The Saturation Limit of the Magnetorotational Instability
- Axisymmetric Magnetorotational Instability in Viscous Accretion Disks
- On the nonlinear saturation of the magnetorotational instability near threshold in a thin-gap Taylor-Couette setup
- A comparison of local simulations and reduced models of MRI-induced turbulence
- Identifying Deficiencies of Standard Accretion Disk Theory: Lessons from a Mean-Field Approach
Cited by in corpus (51)
- Global simulations of protoplanetary disks with ohmic resistivity and ambipolar diffusion
- Effect of Ambipolar Diffusion on the Non-linear Evolution of Magnetorotational Instability in Weakly Ionized Disks
- Magnetic self-organisation in Hall-dominated magnetorotational turbulence
- Global Simulations of Accretion Disks I: Convergence and Comparisons with Local Models
- The magnetorotational instability as a jet launching mechanism
- Magnetic Reconnection Onset via Disruption of a Forming Current Sheet by the Tearing Instability
- Characterizing the mean-field dynamo in turbulent accretion disks
- Dead zones as safe-havens for planetesimals: influence of disc mass and external magnetic field
- Low-Frequency Oscillations in Global Simulations of Black Hole Accretion
- Testing the Propagating Fluctuations Model with a Long, Global Accretion Disk Simulation
- The Impact of Recent Advances in Laboratory Astrophysics on our Understanding of the Cosmos
- Acceleration and Escape Processes of High-energy Particles in Turbulence inside Hot Accretion Flows
- On the maximum magnetic field amplification by the magnetorotational instability in core-collapse supernovae
- Rossby wave instability does not require sharp resistivity gradients
- Numerical simulations of the magnetorotational instability in protoneutron stars: I. Influence of buoyancy
- Steady-state accretion in magnetized protoplanetary disks
- Stochastic Particle Acceleration in Turbulence Generated by the Magnetorotational Instability
- Magnetorotational turbulence transports angular momentum in stratified disks with low magnetic Prandtl number but magnetic Reynolds number above a critical value
- Termination of the magnetorotational instability via parasitic instabilities in core-collapse supernovae
- On the measurements of numerical viscosity and resistivity in Eulerian MHD codes
- Revisiting linear dynamics of non-axisymmetric perturbations in weakly magnetized accretion discs
- Planetesimal and Protoplanet Dynamics in a Turbulent Protoplanetary Disk: Ideal Stratified Disks
- On the Kelvin-Helmholtz instability with smooth initial conditions -- Linear theory and simulations
- The influence of accretion disk thickness on the large-scale magnetic dynamo
- Global MHD Simulations of Accretion Disks in Cataclysmic Variables (CVs): II The Relative Importance of MRI and Spiral Shocks
- An HLLC Riemann Solver for Resistive Relativistic Magnetohydrodynamics
- The Dynamics of Truncated Black Hole Accretion Disks II: Magnetohydrodynamic Case
- Magnetic Flux Transport in Radiatively Inefficient Accretion Flows and the Pathway towards a Magnetically Arrested Disk
- Saturation of the magnetorotational instability and the origin of magnetically elevated accretion discs
- Zero net flux MRI-turbulence in disks sustenance scheme and magnetic Prandtl number dependence
- On the Anisotropic Nature of MRI-Driven Turbulence in Astrophysical Disks
- MRI turbulence in accretion discs at large magnetic Prandtl numbers
- The weakly nonlinear magnetorotational instability in a local geometry
- On the magnetic flux problem in star formation
- Nonlinear transverse cascade and sustenance of MRI-turbulence in Keplerian disks with an azimuthal magnetic field
- Equilibrium disks, MRI mode excitation, and steady state turbulence in global accretion disk simulations
- 3D global simulations of RIAFs: convergence, effects of azimuthal extent and dynamo
- Role of stable modes in driven shear-flow turbulence
- Active modes and dynamical balances in MRI-turbulence of Keplerian disks with a net vertical magnetic field
- The weakly nonlinear magnetorotational instability in a global, cylindrical Taylor-Couette flow
- Assessment of a new sub-grid model for magneto-hydrodynamical turbulence. I. Magnetorotational instability
- Energy Extraction from a Black Hole by a Strongly Magnetized Thin Accretion Disk
- On the convexity of Relativistic Ideal Magnetohydrodynamics
- Correlating nonlinear properties with spectral states of RXTE data: Possible observational evidences for four different accretion modes around compact objects
- The impact of magnetic fields on momentum transport and saturation of shear-flow instability by stable modes
- A two-dimensional mixing length theory of convective transport
- Resistive instabilities in sinusoidal shear flows with a streamwise magnetic field
- Termination of the MRI via parasitic instabilities in core-collapse supernovae: influence of numerical methods
- Spectral Analysis of Non-Ideal MRI Modes: The effect of Hall diffusion
- An effective model for magnetic field amplification by the magnetorotational and parasitic instabilities
- Subgrid modelling of MRI-driven turbulence in differentially rotating neutron stars