Vortex migration in protoplanetary disks
arXiv:1009.5197 · doi:10.1088/0004-637X/725/1/146
Abstract
We consider the radial migration of vortices in two-dimensional isothermal gaseous disks. We find that a vortex core, orbiting at the local gas velocity, induces velocity perturbations that propagate away from the vortex as density waves. The resulting spiral wave pattern is reminiscent of an embedded planet. There are two main causes for asymmetries in these wakes: geometrical effects tend to favor the outer wave, while a radial vortensity gradient leads to an asymmetric vortex core, which favors the wave at the side that has the lowest density. In the case of asymmetric waves, which we always find except for a disk of constant pressure, there is a net exchange of angular momentum between the vortex and the surrounding disk, which leads to orbital migration of the vortex. Numerical hydrodynamical simulations show that this migration can be very rapid, on a time scale of a few thousand orbits, for vortices with a size comparable to the scale height of the disk. We discuss the possible effects of vortex migration on planet formation scenarios.
13 pages, 13 figures, accepted for publication in ApJ
References in corpus (11)
- A comparative study of disc-planet interaction
- Planet formation bursts at the borders of the dead zone in 2D numerical simulations of circumstellar disks
- Vortex generation in protoplanetary disks with an embedded giant planet
- Planetesimal formation around the snow line in MRI-driven turbulent protoplanetary disks
- On corotation torques, horseshoe drag and the possibility of sustained stalled or outward protoplanetary migration
- On disc protoplanet interactions in a non-barotropic disc with thermal diffusion
- On the Stability of Elliptical Vortices in Accretion Discs
- Planetesimal and gas dynamics in binaries
- Baroclinic Vorticity Production in Protoplanetary Disks; Part II: Vortex Growth and Longevity
- Vortices in Thin, Compressible, Unmagnetized Disks
- Type III migration in a low viscosity disc
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- Are protoplanetary disks born with vortices? -- Rossby wave instability driven by protostellar infall
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- Shock-driven Accretion in Circumplanetary Disks: Observables and Satellite Formation
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- Long-Lived Dust Asymmetries at Dead Zone Edges in Protoplanetary Disks
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- Revisiting linear dynamics of non-axisymmetric perturbations in weakly magnetized accretion discs
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- Multiple Spiral Arms in Protoplanetary Disks: Linear Theory
- The Observability Of Vortex-Driven Spiral Arms In Protoplanetary Disk: Basic Spiral Properties
- Parametric Study of the Rossby Wave Instability in a Two-dimensional Barotropic Disk II: Non-Linear Calculations
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- Survival of planet-induced vortices in 2D disks
- Impact of Local Pressure Enhancements on Dust Concentration inTurbulent Protoplanetary Discs
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- Planetesimal formation in self-gravitating discs -- dust trapping by vortices
- Dynamics of Dusty Vortices I: Extensions and limitations of the terminal velocity approximation
- Planet-vortex interaction:How a vortex can shepherd a planetary embryo
- A Simple Time-Dependent Method for Calculating Spirals: Applications to Eccentric Planets in Protoplanetary discs
- Planet-disc interaction in laminar and turbulent discs
- Dust-vortex instability in the regime of well-coupled grains
- Vortex survival in 3D self-gravitating accretion discs
- Boundary Layers of Accretion Disks: Discovery of Vortex-Driven Modes and Other Waves
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): HD 34700 A unveils an inner ring
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- Self-Sustaining Vortices in Protoplanetary Disks: Setting the Stage for Planetary System Formation
- How to form compact & other longer-lived planet-induced vortices: VSI, planet migration, or re-triggers, but not feedback
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- Dynamics of Dusty Vortices II: Stability of 2D dust laden vortices
- Global magnetohydrodynamic simulations of the inner regions of protoplanetary discs. I. Zero-net flux regime
- Spreading pressure bumps in gas-dust discs can stall planet migration via planet-vortex interactions
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- Directly Detecting the Envelopes of Low-mass Planets Embedded In Protoplanetary Discs and The Case For TW Hydrae
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