Rapid inward migration of planets formed by gravitational instability
arXiv:1106.0487 · doi:10.1111/j.1365-2966.2011.19172.x
Abstract
The observation of massive exoplanets at large separation from their host star, like in the HR 8799 system, challenges theories of planet formation. A possible formation mechanism involves the fragmentation of massive self-gravitating discs into clumps. While the conditions for fragmentation have been extensively studied, little is known of the subsequent evolution of these giant planet embryos, in particular their expected orbital migration. Assuming a single planet has formed by fragmentation, we investigate its interaction with the gravitoturbulent disc it is embedded in. Two-dimensional hydrodynamical simulations are used with a simple prescription for the disc cooling. A steady gravitoturbulent disc is first set up, after which simulations are restarted including a planet with a range of masses approximately equal to the clump's initial mass expected in fragmenting discs. Planets rapidly migrate inwards, despite the stochastic kicks due to the turbulent density fluctuations. We show that the migration timescale is essentially that of type I migration, with the planets having no time to open a gap. In discs with aspect ratio ~ 0.1 at their forming location, planets with a mass comparable to, or larger than Jupiter's can migrate in as short as 10000 years, that is, about 10 orbits at 100 AU. Massive planets formed at large separation from their star by gravitational instability are thus unlikely to stay in place, and should rapidly migrate towards the inner parts of protoplanetary discs, regardless of the planet mass.
13 pages, 10 figures, accepted for publication in MNRAS
References in corpus (13)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Optical Images of an Exosolar Planet 25 Light Years from Earth
- Toward a Deterministic Model of Planetary Formation V. Accumulation Near the Ice Line
- The Burst Mode of Protostellar Accretion
- On the corotation torque in a radiatively inefficient disk
- Characterising the Gravitational Instability in Cooling Accretion Discs
- On corotation torques, horseshoe drag and the possibility of sustained stalled or outward protoplanetary migration
- Type I planetary migration in a self-gravitating disk
- Recurrent Planet Formation and Intermittent Protostellar Outflows Induced by Episodic Mass Accretion
- On disc protoplanet interactions in a non-barotropic disc with thermal diffusion
- Can giant planets form by gravitational fragmentation of discs?
- Saturated torque formula for planetary migration in viscous disks with thermal diffusion: recipe for protoplanet population synthesis
- The dynamical role of the circumplanetary disc in planetary migration
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- On the existence of accretion-driven bursts in massive star formation
- Formation of giant planets and brown dwarfs on wide orbits
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- Towards a Population Synthesis Model of Objects formed by Self-Gravitating Disc Fragmentation and Tidal Downsizing
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- Towards a population synthesis model of self-gravitating disc fragmentation and tidal downsizing II: The effect of fragment-fragment interactions
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- On the gap-opening criterion of migrating planets in protoplanetary disks
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- Molecules with ALMA at Planet-forming Scales (MAPS). A Circumplanetary Disk Candidate in Molecular Line Emission in the AS 209 Disk
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- Dawes Review. The tidal downsizing hypothesis of planet formation
- Type I planet migration in weakly magnetised laminar discs
- Planet formation from the ejecta of common envelopes
- How do Most Planets Form? -- Constraints on Disk Instability from Direct Imaging
- WD 1856 b: a close giant planet around a white dwarf that could have survived a common-envelope phase
- The collapse of protoplanetary clumps formed through disc instability: 3D simulations of the pre-dissociation phase
- Characterization of the gaseous companion κ Andromedae b: New Keck and LBTI high-contrast observations
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- Tidal Downsizing model. I. Numerical methods: saving giant planets from tidal disruptions
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- Radiative feedback from protoplanets in self-gravitating protoplanetary discs
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- An Ultra Metal-poor Star Near the Hydrogen-burning Limit
- The Dynamical Fate of Self-Gravitating Disc Fragments After Tidal Downsizing
- Recent developments in planet migration theory
- An alternative origin for debris rings of planetesimals
- Core-assisted gas capture instability: a new mode of giant planet formation by gravitationally unstable discs
- Formation, orbital and thermal evolution, and survival of planetary-mass clumps in the early phase of circumstellar disk evolution
- Triggered fragmentation in self-gravitating discs: forming fragments at small radii
- Tidal Downsizing Model. III. Planets from sub-Earths to Brown Dwarfs: structure and metallicity preferences
- Metal loading of giant gas planets
- Positive metallicity correlation for coreless giant planets
- Ejection of gaseous clumps from gravitationally unstable protostellar disks
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- The role of planetary formation and evolution in shaping the composition of exoplanetary atmospheres
- Forming Pop III binaries in self-gravitating disks: how to keep the orbital angular momentum
- On the diversity in mass and orbital radius of giant planets formed via disk instability
- The influence of infall on the properties of protoplanetary discs
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- Giant planets and brown dwarfs on wide orbits: a code comparison project
- Dusty disc-planet interaction with dust-free simulations
- Changes in the metallicity of gas giant planets due to pebble accretion
- Accretion bursts in high-mass protostars: a new testbed for models of episodic accretion
- Planet Migration in Self-Gravitating Discs: Survival of Planets
- Binary companions triggering fragmentation in self-gravitating discs
- The diverse lives of massive protoplanets in self-gravitating discs
- Eccentric gap induced by a super-Jupiter mass planet
- Tidal Downsizing Model. IV. Destructive feedback in planets
- Orbital Migration of Protoplanets in a Marginally Gravitationally Unstable Disk
- The evolution of self-gravitating accretion discs
- Constraining the initial planetary population in the gravitational instability model
- Extreme evaporation of planets in hot thermally unstable protoplanetary discs: the case of FU Ori
- TW Hya: an old protoplanetary disc revived by its planet
- Outward migration of a giant planet with a gravitationally unstable gap edge
- Radial migration of gap-opening planets in protoplanetary disks. II. The case of a planet pair
- Episodic accretion and mergers during growth of massive protostars
- The Concentration and Growth of Solids in Fragmenting Circumstellar Disks
- Migration of accreting planets in radiative discs from dynamical torques
- Efficient radiative transfer techniques in hydrodynamic simulations
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- AB Aurigae: Possible evidence of planet formation through the gravitational instability
- Inward and outward migration of massive planets: moving towards a stalling radius
- On the evolution of vortices in massive protoplanetary discs
- Orbital migration of giant planets induced by gravitationally unstable gaps: the effect of planet mass
- Filling in the Gaps: Can Gravitationally Unstable Discs Form the Seeds of Gas Giant Planets?
- On the origin of wide-orbit ALMA planets: giant protoplanets disrupted by their cores
- Planet formation in post-common-envelope binaries
- Orbital Migration of Protoplanets in a Marginally Gravitationally Unstable Disk. II. Migration, Merging, and Ejection
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- The post-main-sequence fate of the HR 8799 planetary system
- Modeling gravitational instabilities in self-gravitating protoplanetary disks with adaptive mesh refinement techniques
- What Determines the Maximum Mass of AGN-assisted Black Hole Mergers?
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- The paradox of youth for ALMA planet candidates
- Pebble accretion in self-gravitating protostellar discs
- Planet formation: key mechanisms and global models
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