Protoplanetary Disk Winds by Magnetorotational Instability : Formation of an Inner Hole and a Crucial Assist for Planet Formation
arXiv:0911.0311 · doi:10.1088/0004-637X/718/2/1289
Abstract
By constructing a global model based on 3D local magnetohydrodynamical (MHD) simulations, we show that the disk wind driven by magnetorotational instability (MRI) plays a significant role in the dispersal of the gas component of proto-planetary disks. Because the mass loss time scale by the MRI-driven disk winds is proportional to the local Keplerian rotation period, a gas disk dynamically evaporates from the inner region with possibly creating a gradually expanding inner hole, while a sizable amount of the gas remains in the outer region. The disk wind is highly time-dependent with quasi-periodicity of several times Keplerian rotation period at each radius, which will be observed as time-variability of protostar-protoplanetary disk systems. These features persistently hold even if a dead zone exists because the disk winds are driven from the surface regions where ionizing cosmic rays and high energy photons can penetrate. Moreover, the predicted inside-out clearing significantly suppresses the infall of boulders to a central star and the Type I migration of proto-planets which are favorable for the formation and survival of planets.
16 pages, 18 figures embedded, comments welcome, ApJ in press, The resolution of figures are reduced. The original version is at http://www.ta.phys.nagoya-u.ac.jp/stakeru/paper/paper_dspppds200916.pdf
References in corpus (18)
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- Radiation-Hydrodynamic Models of X-Ray & EUV Photoevaporating Protoplanetary Discs
- Sustained Magnetorotational Turbulence in Local Simulations of Stratified Disks with Zero Net Magnetic Flux
- Time-Evolution of Viscous Circumstellar Disks due to Photoevaporation by FUV, EUV and X-ray Radiation from the Central Star
- A Spitzer view of protoplanetary disks in the gamma Velorum cluster
- Probing T Tauri Accretion and Outflow with 1 Micron Spectroscopy
- X-ray irradiated protoplanetary disk atmospheres II: Predictions from models in hydrostatic equilibrium
- Angular Momentum Transport in Accretion Disks: Scaling Laws in MRI-driven Turbulence
- X-ray Emission from T Tauri Stars and the Role of Accretion: Inferences from the XMM-Newton Extended Survey of the Taurus Molecular Cloud
- What Is The Numerically Converged Amplitude of MHD Turbulence in Stratified Shearing Boxes?
- Turbulence-driven Polar Winds from T Tauri Stars Energized by Magnetospheric Accretion
- Evidence for Dynamical Changes in a Transitional Protoplanetary Disk with Mid-infrared Variability
- The HD 163296 Circumstellar Disk in Scattered Light: Evidence of Time-Variable Self-Shadowing
- A slowly accreting ~10 Myr old transitional disk in Orion OB1a
- A mean-field approach to the propagation of field patterns in stratified magneto rotational turbulence
- Global Three-Dimensional MHD Simulations of Galactic Gaseous Disks: I. Amplification of Mean Magnetic Fields in Axisymmetric Gravitational Potential
- Variations of the 10 um Silicate Features in the Actively Accreting T Tauri Stars: DG Tau and XZ Tau
- Dispersal of protoplanetary disks by central wind stripping
Cited by in corpus (117)
- Resolved Images of Large Cavities in Protoplanetary Transition Disks
- Wind-driven Accretion in Protoplanetary Disks. I: Suppression of the Magnetorotational Instability and Launching of the Magnetocentrifugal Wind
- Origin of water in the inner Solar System: Planetesimals scattered inward during Jupiter and Saturn's rapid gas accretion
- Local Study of Accretion Disks with a Strong Vertical Magnetic Field: Magnetorotational Instability and Disk Outflow
- Direct Imaging of Fine Structures in Giant Planet Forming Regions of the Protoplanetary Disk around AB Aurigae
- Evolution of Protoplanetary Discs with Magnetically Driven Disc Winds
- Magnetorotational Instability Driven Accretion in Protoplanetary Disks
- Challenges in Planet Formation
- Local outflows from turbulent accretion disks
- Modeling Magnetorotational Turbulence in Protoplanetary Disks with Dead Zones
- Turbulence and Steady Flows in 3D Global Stratified MHD Simulations of Accretion Disks
- MHD Simulations of Global Accretion Disks with Vertical Magnetic Fields
- Can dead zones create structures like a transition disk?
- The formation of rings and gaps in magnetically coupled disk-wind systems: ambipolar diffusion and reconnection
- 3D Radiation Non-ideal Magnetohydrodynamical Simulations Of The Inner Rim In Protoplanetary Disks
- A reassessment of the in situ formation of close-in super-Earths
- Hall-effect Mediated Magnetic Flux Transport in Protoplanetary Disks
- The Formation of Population III Stars in Gas Accretion Stage: Effects of Magnetic Fields
- Formation of close-in super-Earths in evolving protoplanetary disks due to disk winds
- Imaging the Inner and Outer Gaps of the Pre-Transitional Disk of HD 169142 at 7 mm
- Convection Causes Enhanced Magnetic Turbulence in Accretion Disks in Outburst
- Dynamical rearrangement of super-Earths during disk dispersal I. Outline of the magnetospheric rebound model
- Heating and Cooling Protostellar Disks
- The fate of planetesimals in turbulent disks with dead zones. II. Limits on the viability of runaway accretion
- Pebble Accretion and the Diversity of Planetary Systems
- Effects of the Planetary Temperature on the Circumplanetary Disk and on the Gap
- Infrared Variability of Evolved Protoplanetary Disks: Evidence for Scale Height Variations in the Inner Disk
- Electrostatic Barrier against Dust Growth in Protoplanetary Disks. II. Measuring the Size of the "Frozen" Zone
- The Sizes and Depletions of the Dust and Gas Cavities in the Transitional Disk J160421.7-213028
- Radiation Hydrodynamics Simulations of Photoevaporation of Protoplanetary Disks by Ultra Violet Radiation: Metallicity Dependence
- Suppression of type I migration by disk winds
- Do Giant Planets Survive Type II Migration?
- Transitional disks and their origins: an infrared spectroscopic survey of Orion A
- Dispersal of protoplanetary disks by the combination of magnetically driven and photoevaporative winds
- Radial Transport of Large-Scale Magnetic Fields in Accretion Disks. I. Steady Solutions and an Upper Limit on the Vertical Field Strength
- From Birth to Death of Protoplanetary Disks: Modeling Their Formation, Evolution, and Dispersal
- Planetesimal Formation in Magnetorotationally Dead Zones: Critical Dependence on the Net Vertical Magnetic Flux
- Steady-state accretion in magnetized protoplanetary disks
- Grand challenges in protoplanetary disc modelling
- Radial variations in grain sizes and dust scale heights in the protoplanetary disk around HD 163296 revealed by ALMA polarization observation
- Resolution Dependence of Magnetorotational Turbulence in the Isothermal Stratified Shearing Box
- Wind-driven Accretion in Transitional Protostellar Disks
- Stochastic Particle Acceleration in Turbulence Generated by the Magnetorotational Instability
- From Planetesimals to Planets in Turbulent Protoplanetary Disks I. Onset of Runaway Growth
- Dust Dynamics in Protoplanetary Disk Winds Driven by Magneto-Rotational Turbulence: A Mechanism for Floating Dust Grains with Characteristic Sizes
- Interdependence of Electric Discharge and The Magnetorotational Instability in Protoplanetary Disks
- Structure Formation in a Young Protoplanetary Disk by a Magnetic Disk Wind
- N-body Simulations of Terrestrial Planet Formation under the Influence of a Hot Jupiter
- Planetesimal and Protoplanet Dynamics in a Turbulent Protoplanetary Disk: Ideal Stratified Disks
- The Fate of Planetesimals in Turbulent Disks with Dead Zones. I. The Turbulent Stirring Recipe
- Breaking Resonant Chains: Destabilization of Resonant Planets due to Long-term Mass Evolution
- Formation of the terrestrial planets in the solar system around 1 au via radial concentration of planetesimals
- ALMA Survey of Lupus Class III Stars: Early Planetesimal Belt Formation and Rapid Disk Dispersal
- Magnetohydrodynamic Turbulence Powered by Magnetorotational Instability in Nascent Proto-Neutron Stars
- Formation of terrestrial planets in disks evolving via disk winds and implications for the origin of the solar system's terrestrial planets
- Global simulations of magnetorotational turbulence I: convergence and the quasi-steady state
- Subaru/HiCIAO imaging of LkH 330 - multi-band detection of the gap and spiral-like structures
- Jet launching from accretion discs in the local approximation
- Evolution of an Accretion Disk in Binary Black Hole Systems
- Binary-induced spiral arms inside the disc cavity of AB Aurigae
- Radial Transport of Large-Scale Magnetic Fields in Accretion Disks. II. Relaxation to Steady States
- TOI-216: Resonant Constraints on Planet Migration
- Gap opening beyond dead zones by photoevaporation
- Global axisymmetric simulations of photoevaporation and magnetically driven protoplanetary disk winds
- Magnetic field and early evolution of circumstellar disks
- Induced Turbulence and the Density Structure of the Dust Layer in a Protoplanetary Disk
- Towards a population synthesis of discs and planets. II. Confronting disc models and observations at the population level
- Orbital Evolution of Moons in Weakly Accreting Circumplanetary Disks
- Stochastic Noncircular Motion and Outflows Driven by Magnetic Activity in the Galactic Bulge Region
- Dust entrainment in magnetically and thermally driven disk winds
- The origin of the eccentricity of the hot Jupiter in CI Tau
- The Nonlinear Ohm's Law: Plasma Heating by Strong Electric Fields and its Effects on the Ionization Balance in Protoplanetary Disks
- Planet Formation around Super Massive Black Holes in the Active Galactic Nuclei
- Dispersal timescale of protoplanetary disks in the low-metallicity young cluster Dolidze 25
- Electron Heating in the Magnetorotational Instability: Implications for Turbulence Strength in Outer Regions of Protoplanetary Disks
- The diverse lives of massive protoplanets in self-gravitating discs
- Unified simulations of planetary formation and atmospheric evolution II: Rapid disk clearing by photoevaporation yields low-mass super-Earth atmospheres
- New growth mechanism of dust grains in protoplanetary disks with magnetically driven disk winds
- On Vertically Global, Horizontally Local Models for Astrophysical Disks
- Self-consistent Simulations of Alfven Wave Driven Winds from the Sun and Stars
- Centrifugally driven winds from protostellar accretion discs. I - Formulation and initial results
- Determining dispersal mechanisms of protoplanetary disks using accretion and wind mass loss rates
- Dynamics Near the Inner Dead-Zone Edges in a Proprotoplanetary Disk
- Consequences of tidal interaction between disks and orbiting protoplanets for the evolution of multi-planet systems with architecture resembling that of Kepler 444
- Formation of Solar system analogues II: post-gas phase growth and water accretion in extended discs via N-body simulations
- Effects of global gas flows on type I migration
- Super-Earths as Failed Cores in Orbital Migration Traps
- Cosmic-ray ionization rate in protoplanetary disks with sheared magnetic fields
- Driving Disk Winds and Heating up Hot Coronae by MRI Turbulence
- Global simulations of magnetorotational turbulence II: turbulent energetics
- Vertical Structure of Magnetized Accretion Disks around Young Stars
- MRI-driven angular momentum transport in protoplanetary disks
- Magnetorotationally driven wind cycles in local disc models
- Dynamical rearrangement of super-Earths during disk dispersal II. Assessment of the magnetospheric rebound model for planet formation scenarios
- A limit on gas accretion onto close-in super-Earth cores from disk accretion
- Viscous Instability Triggered by Layered Accretion in Protoplanetary Disks
- Magnetohydrodynamics in a Cylindrical Shearing Box
- Near-IR Polarized Scattered Light Imagery of the DoAr 28 Transitional Disk
- A Theoretical Model of X-ray Jets from Young Stellar Objects
- Structure of Protoplanetary Discs with Magnetically-driven Winds
- Evolution of Tidal Disruption Event Disks with Magnetically Driven Winds
- The New Generation Planetary Population Synthesis (NGPPS). VII. Statistical comparison with the HARPS/Coralie survey
- Rapid Dissipation of Protoplanetary Disks in Ophiuchus
- Study of infrared excess from circumstellar disks in binaries with Spitzer/IRAC
- Time-dependent evolution of the protoplanetary discs with magnetic winds
- MHD in a cylindrical shearing box II: Intermittent Bursts and Substructures in MRI Turbulence
- The evolution of a circumplanetary disc with a dead zone
- Transition region from turbulent to dead zone in protoplanetary disks: local shearing box simulations
- Magneto-rotational instability in magnetically polarized discs
- Constrained Evolution of a Radially Magnetized Protoplanetary Disk: Implications for Planetary Migration
- On the formation of multiple dust-trapping rings in the inner Solar system
- Dust in the wind of outbursting young stars
- Halting Migration in Magnetospherically Sculpted Protoplanetary Disks
- Wind-MRI interactions in local models of protoplanetary discs: I. Ohmic resistivity
- Gas chemistry in the dust depleted inner regions of protoplanetary disks. I. Near-IR spectra and overtones
- Investigating Magnetic Activity in the Galactic Centre by Global MHD Simulation
- On the crystallinity of silicate dust in evolving protoplanetary disks due to magnetically driven disk winds