Vortices in Protoplanetary Disks
arXiv:astro-ph/9901384 · doi:10.1086/307720
Abstract
We use a high order accuracy spectral code to carry out two-dimensional time-dependent numerical simulations of vortices in accretion disks. In particular, we examine the stability and the life time of vortices in circumstellar disks around young stellar objects. The results show that cyclonic vortices dissipate quickly, while anticyclonic vortices can survive in the flow for many orbits. When more than one vortex is present, the anticyclonic vortices interact through vorticity waves and merge together to form larger vortices. The decay time of anticyclonic vortices is of the order of 30-60 orbital periods (for a viscosity parameter alpha = 1.e-4), which is sufficiently long to allow heavy dust particles to rapidly concentrate in the core of anticyclonic vortices in protoplanetary disks. This dust concentration increases the local density of centimeter-size grains, thereby favoring the formation of larger scale objects which are then capable of efficiently triggering a gravitational instability. The relatively long-lived vortices found in this work may therefore play a key role in the formation process of giant planets.
The Astrophysical Journal, in press
Cited by in corpus (56)
- Turbulence in Accretion Disks. Vorticity Generation and Angular Momentum Transport via the Global Baroclinic Instability
- Episodic accretion in magnetically layered protoplanetary discs
- Steady state of dust distributions in disk vortices: Observational predictions and applications to transitional disks
- Three-Dimensional Vortices in Stratified Protoplanetary Disks
- Simulations of dust-trapping vortices in protoplanetary discs
- On the Stability of Elliptical Vortices in Accretion Discs
- Global MHD Simulations of Cylindrical Keplerian Disks
- Formation of Giant Planets by Concurrent Accretion of Solids and Gas inside an Anti-Cyclonic Vortex
- Baroclinic Vorticity Production in Protoplanetary Disks; Part I: Vortex Formation
- Effects of dust feedback on vortices in protoplanetary disks
- On the diversity of asymmetries in gapped protoplanetary disks
- Empirical constraints on turbulence in proto-planetary discs
- Dust-trapping Rossby vortices in protoplanetary disks
- On the accumulation of solid bodies in global turbulent protoplanetary disc models
- Baroclinic Vorticity Production in Protoplanetary Disks; Part II: Vortex Growth and Longevity
- Formation and long-term evolution of 3D vortices in protoplanetary discs
- The Formation and Role of Vortices in Protoplanetary Disks
- Rossby wave instability at dead zone boundaries in 3D resistive magnetohydrodynamical global models of protoplanetary disks
- Vortices in Thin, Compressible, Unmagnetized Disks
- Three Dimensional Compressible Hydrodynamic Simulations of Vortices in Disks
- A Parameter Study for Baroclinic Vortex Amplification
- Vortex and spiral instabilities at gap edges in three-dimensional self-gravitating disc-satellite simulations
- Are protoplanetary disks born with vortices? -- Rossby wave instability driven by protostellar infall
- Dust capture and long-lived density enhancements triggered by vortices in 2D protoplanetary disks
- Toroidal vortices and the conglomeration of dust into rings in protoplanetary discs
- Spiral density wave generation by vortices in Keplerian flows
- The Sandwich Mode for Vertical Shear Instability in Protoplanetary Disks
- Vortices as nurseries for planetesimal formation in protoplanetary discs
- Dynamical Gaseous Rings in Global Simulations of Protoplanetary Disk Formation
- Potential vorticity dynamics in the framework of disk shallow-water theory: I. The Rossby wave instability
- On Rossby waves and vortices with differential rotation
- The effects of the Tidal Force on Shear Instabilities in the Dust Layer of the Solar Nebula
- Formation, Survival, and Destruction of Vortices in Accretion Disks
- Spectroscopic abundance analysis of dwarfs in young open cluster IC 4665
- Vortices in self-gravitating gaseous discs
- Survival of planet-induced vortices in 2D disks
- Transient growth and coupling of vortex and wave modes in self-gravitating gaseous discs
- Stability and nonlinear adjustment of vortices in Keplerian flows
- Planetesimal formation in self-gravitating discs -- dust trapping by vortices
- Rossby Wave Instability and Long-Term Evolution of Dead Zones in Protoplanetary Discs
- Toroidal vortices as a solution to the dust migration problem
- Interpreting Brightness Asymmetries in Transition Disks: Vortex at Dead Zone or Planet Carved Gap Edges?
- Vortex survival in 3D self-gravitating accretion discs
- A shallow-water theory for annular sections of Keplerian Disks
- Extreme Pebble Accretion in Ringed Protoplanetary Discs
- A Vorticity-Preserving Hydrodynamical Scheme for Modeling Accretion Disk Flows
- Implications of mean field accretion disc theory for vorticity and magnetic field growth
- Hydrodynamical activity in thin accretion disks
- Morphology and dynamical stability of self-gravitating vortices: Numerical simulations
- Vortex weighing and dating of planets in protoplanetary discs
- Evidence for Companion-Induced Secular Changes in the Turbulent Disk of a Be Star in the LMC MACHO Database
- Rossby wave instability in weakly ionized protoplanetary disks. II. radial B-fields
- The Prospects for Hurricane-like Vortices in Protoplanetary Disks
- Vorticity Budget of Weak Thermal Convection in Keplerian disks
- Decoding the Gravitational Geometry and Stellar Photometric Profiles of Galaxy NGC 7331
- Impact of an inhomogeneous density distribution on selected observational characteristics of circumstellar disks