Turbulence In the Outer Regions of Protoplanetary Disks. II. Strong Accretion Driven by a Vertical Magnetic Field
arXiv:1306.3222 · doi:10.1088/0004-637X/775/1/73
Abstract
We carry out a series of local, vertically stratified shearing box simulations of protoplanetary disks that include ambipolar diffusion and a net vertical magnetic field. The ambipolar diffusion profiles we employ correspond to 30AU and 100AU in a minimum mass solar nebula (MMSN) disk model, which consists of a far-UV-ionized surface layer and low-ionization disk interior. These simulations serve as a follow up to Simon et al. (2013), in which we found that without a net vertical field, the turbulent stresses that result from the magnetorotational instability (MRI) are too weak to account for observed accretion rates. The simulations in this work show a very strong dependence of the accretion stresses on the strength of the background vertical field; as the field strength increases, the stress amplitude increases. For gas to magnetic pressure ratios of 1e4 and 1e5, we find accretion rates between 1e-8 and 1e-7 solar masses per year. These accretion rates agree with observational constraints, suggesting a vertical magnetic field strength between 60 and 200 microgauss at 30AU and 10 and 30 microgauss at 100AU in a MMSN disk. Furthermore, the stress has a non-negligible component due to a magnetic wind. For sufficiently strong vertical field strengths, MRI turbulence is quenched, and the flow becomes largely laminar, with accretion proceeding through large scale correlations in the radial and toroidal field components as well as through the magnetic wind. In all simulations, the presence of a low ionization region near the disk mid-plane, which we call the ambipolar damping zone, results in reduced stresses there.
accepted to ApJ after very minor revisions
References in corpus (10)
- Athena: A New Code for Astrophysical MHD
- Particle Stirring in Turbulent Gas Disks: Including Orbital Oscillations
- Closed-form expressions for particle relative velocities induced by turbulence
- An Unsplit Godunov Method for Ideal MHD via Constrained Transport in Three Dimensions
- Photoevaporation of protoplanetary discs I: hydrodynamic models
- Dust size distributions in coagulation/fragmentation equilibrium: Numerical solutions and analytical fits
- Angular Momentum Transport in Accretion Disks: Scaling Laws in MRI-driven Turbulence
- Wind-driven Accretion in Protoplanetary Disks --- II: Radial Dependence and Global Picture
- A Simple and Accurate Riemann Solver for Isothermal MHD
- Angular momentum transport in protostellar discs
Cited by in corpus (112)
- Gravitational Instabilities in Circumstellar Disks
- Gaps, Rings, and Non-Axisymmetric Structures in Protoplanetary Disks - From Simulations to ALMA Observations
- On the diversity and statistical properties of protostellar discs
- Weak Turbulence in the HD 163296 Protoplanetary Disk Revealed by ALMA CO Observations
- Global simulations of protoplanetary disks with ohmic resistivity and ambipolar diffusion
- A Three-Dimensional View of Turbulence: Constraints on Turbulent Motions in the HD 163296 Protoplanetary Disk using DCO
- Thanatology in Protoplanetary Discs: the combined influence of Ohmic, Hall, and ambipolar diffusion on dead zones
- Super-Eddington Accretion Disks around Supermassive black Holes
- Towards a Global Evolutionary Model of Protoplanetary Disks
- Evolution of Protoplanetary Discs with Magnetically Driven Disc Winds
- Turbulence in the TW Hya Disk
- Hall-effect Controlled Gas Dynamics in Protoplanetary Disks: II. Full 3D Simulations toward the Outer Disk
- Magneto-thermal Disk Wind from Protoplanetary Disks
- Global Simulations of the Inner Regions of Protoplanetary Disks with Comprehensive Disk Microphysics
- Magnetically driven accretion in protoplanetary discs
- Global Evolution of an Accretion Disk with Net Vertical Field: Coronal Accretion, Flux Transport, and Disk Winds
- Hall-effect Controlled Gas Dynamics in Protoplanetary Disks: I. Wind Solutions at the Inner Disk
- Magnetic Flux Concentration and Zonal Flows in Magnetorotational Instability Turbulence
- Transport of CO in Protoplanetary Disks: Consequences of Pebble Formation, Settling, and Radial Drift
- Can dead zones create structures like a transition disk?
- Dust Trapping by Vortices in Transitional Disks: Evidence for Non-ideal MHD Effects in Protoplanetary Disks
- Global Simulations of Protoplanetary Disk Outflows with Coupled Non-ideal Magnetohydrodynamics and Consistent Thermochemistry
- Temperature, Mass and Turbulence: A Spatially Resolved Multi-Band Non-LTE Analysis of CS in TW~Hya
- Hall-effect Mediated Magnetic Flux Transport in Protoplanetary Disks
- Dust settling and rings in the outer regions of protoplanetary discs subject to ambipolar diffusion
- Protoplanetary Disks as (Possibly) Viscous Disks
- A systematic description of wind-driven protoplanetary discs
- Saturation of the magnetorotational instability in the unstratified shearing box with zero net flux: convergence in taller boxes
- A mechanism for hysteresis in black hole binary state transitions
- Dust Transport in MRI Turbulent Disks: Ideal and Non-ideal MHD with Ambipolar Diffusion
- Global Three-Dimensional Simulations of Outer Protoplanetary Disks with Ambipolar Diffusion
- Protoplanetary Disk Sizes and Angular Momentum Transport
- Spontaneous ring formation in wind-emitting accretion discs
- Radiation Hydrodynamics Simulations of Photoevaporation of Protoplanetary Disks by Ultra Violet Radiation: Metallicity Dependence
- Turbulence Regulates the Rate of Planetesimal Formation via Gravitational Collapse
- The formation of rings and gaps in wind-launching non-ideal MHD disks: three-dimensional simulations
- Two timescale dispersal of magnetized protoplanetary disks
- Stringent limits on the magnetic field strength in the disc of TW Hya: ALMA observations of CN polarisation
- Efficiency of Particle Trapping in the Outer Regions of Protoplanetary Disks
- Radial Transport of Large-Scale Magnetic Fields in Accretion Disks. I. Steady Solutions and an Upper Limit on the Vertical Field Strength
- Signatures of MRI-Driven Turbulence in Protoplanetary Disks: Predictions for ALMA Observations
- Global evolution of the magnetic field in a thin disc and its consequences for protoplanetary systems
- ALMA Dust Polarization Observations of Two Young Edge-on Protostellar Disks
- Steady-state accretion in magnetized protoplanetary disks
- Origin of Weak Turbulence in the Outer Regions of Protoplanetary Disks
- Effect of wind-driven accretion on planetary migration
- The evolution of photo-evaporating viscous discs in binaries
- Wind-driven Accretion in Transitional Protostellar Disks
- Global Simulations of the Vertical Shear Instability with Non-ideal Magnetohydrodynamical Effects
- Fossil magnetic field of accretion disks of young stars
- Gravito-Turbulent Disks in 3D: Turbulent Velocities vs. Depth
- Magnetically Induced Disk Winds and Transport in the HL Tau Disk
- Angular momentum transport and large eddy simulations in magnetorotational turbulence: the small Pm limit
- Turbulent-diffusion Mediated CO Depletion in Weakly Turbulent Protoplanetary disks
- Self-organisation in protoplanetary disks: global, non-stratified Hall-MHD simulations
- An Ordered Magnetic Field in the Protoplanetary Disk of AB Aur Revealed by Mid-Infrared Polarimetry
- Three-dimensional Global Simulations of Type-II Planet-disk Interaction with a Magnetized Disk Wind: I. Magnetic Flux Concentration and Gap Properties
- Determining the mid-plane conditions of circumstellar discs using gas and dust modelling: a study of HD 163296
- Dust Settling and Clumping in MRI Turbulent Outer Protoplanetary Disks
- Strongly magnetized accretion discs require poloidal flux
- The magnetorotational instability in debris-disc gas
- On the Grain-Modified Magnetic Diffusivities in Protoplanetary Disks
- Radiation thermo-chemical models of protoplanetary disks. Grain and polycyclic aromatic hydrocarbon charging
- Physics in Very Strong Magnetic Fields: Introduction and Overview
- Pebble Accretion in Turbulent Protoplanetary Disks
- Photoevaporation of Grain-Depleted Protoplanetary Disks around Intermediate-Mass Stars: Investigating Possibility of Gas-Rich Debris Disks as Protoplanetary Remnants
- Turbulence in outer protoplanetary disks: MRI or VSI?
- TOI-216: Resonant Constraints on Planet Migration
- Radial Transport of Large-Scale Magnetic Fields in Accretion Disks. II. Relaxation to Steady States
- Turbulent and wind-driven accretion in dwarf novae threaded by a large scale magnetic field
- Global Three-Dimensional Radiation Magnetohydrodynamic Simulations of Accretion onto a Stellar Mass Black Hole at Sub- and Near-critical Accretion Rates
- Effects of Dust Evolution on the Vertical Shear Instability in the Outer Regions of Protoplanetary Disks
- The Nonlinear Ohm's Law: Plasma Heating by Strong Electric Fields and its Effects on the Ionization Balance in Protoplanetary Disks
- Dispersal timescale of protoplanetary disks in the low-metallicity young cluster Dolidze 25
- On the Vertical Shear Instability in Magnetized Protoplanetary Disks
- Disc wind models for FU Ori objects
- Electron Heating in the Magnetorotational Instability: Implications for Turbulence Strength in Outer Regions of Protoplanetary Disks
- Centrifugally driven winds from protostellar accretion discs. I - Formulation and initial results
- FUV Irradiation and the Heat Signature of Accretion in Protoplanetary Disk Atmospheres
- The Roles of Dust Growth in the Temperature Evolution and Snow Line Migration in Magnetically Accreting Protoplanetary Disks
- Two saturated states of the vertical shear instability in protoplanetary disks with vertically varying cooling times
- Active modes and dynamical balances in MRI-turbulence of Keplerian disks with a net vertical magnetic field
- Effects of global gas flows on type I migration
- Gravitoturbulence in magnetised protostellar discs
- Migrating Planets into Ultra-Short-Period Orbits during Episodic Accretion Events
- Magnetohydrodynamics of protoplanetary discs
- Turbulence, Transport and Waves in Ohmic Dead Zones
- The Effects of Protostellar Disk Turbulence on CO Emission Lines: A Comparison Study of Disks with Constant CO Abundance vs. Chemically Evolving Disks
- Growth of Magnetorotational Instability in Circumstellar Disks around Class 0 Protostars
- Disk evolution and the fate of water
- A brief overview of planet formation
- Magnetic disk winds in protoplanetary disks: Description of the model and impact on global disk evolution
- United Theory of Planet Formation (I): Tandem Regime
- Circumstellar discs: What will be next?
- Effect of Different Angular Momentum Transport mechanisms on the Distribution of Water in Protoplanetary Disks
- A wind-driving disc model for the mm-wavelength polarization structure of HL Tau
- The Generalized Nonlinear Ohm's Law: How a Strong Electric Field Influences Non-ideal MHD Effects in Dusty Protoplanetary Disks
- Structure of Protoplanetary Discs with Magnetically-driven Winds
- Untangling Magnetic Complexity in Protoplanetary Disks with the Zeeman Effect
- Characterization of mid-infrared polarization due to scattering in protoplanetary disks
- A question of personalities: evolution of viscous and wind-driven protoplanetary discs in the presence of dead zones
- Transition region from turbulent to dead zone in protoplanetary disks: local shearing box simulations
- Dynamics of magnetized accretion disks of young stars
- Time-dependent evolution of the protoplanetary discs with magnetic winds
- Protoplanetary disks around magnetized young stars with large-scale magnetic fields I: Steady-state solutions
- Inverse cascade suppression and shear layer formation in MHD turbulence subject to a guide field and misaligned rotation
- The Influence of Magnetic Field Geometry on the Formation of Close-in Exoplanets
- The Nature of Turbulence in the Outer Regions of Protoplanetary Disks
- Rossby wave instability in weakly ionized protoplanetary disks. II. radial B-fields
- On the dynamics of pebbles in protoplanetary disks with magnetically-driven winds
- History of the Solar Nebula from Meteorite Paleomagnetism
- The Dispersal of Planet-forming discs: Theory confronts Observations