Planet migration in three-dimensional radiative discs
arXiv:0908.1863 · doi:10.1051/0004-6361/200912072
Abstract
The migration of growing protoplanets depends on the thermodynamics of the ambient disc. Standard modelling, using locally isothermal discs, indicate in the low planet mass regime an inward (type-I) migration. Taking into account non-isothermal effects, recent studies have shown that the direction of the type-I migration can change from inward to outward. In this paper we extend previous two-dimensional studies, and investigate the planet-disc interaction in viscous, radiative discs using fully three-dimensional radiation hydrodynamical simulations of protoplanetary accretion discs with embedded planets, for a range of planetary masses. We use an explicit three-dimensional (3D) hydrodynamical code NIRVANA that includes full tensor viscosity. We have added implicit radiation transport in the flux-limited diffusion approximation, and to speed up the simulations significantly we have newly adapted and implemented the FARGO-algorithm in a 3D context. First, we present results of test simulations that demonstrate the accuracy of the newly implemented FARGO-method in 3D. For a planet mass of 20 M_earth we then show that the inclusion of radiative effects yields a torque reversal also in full 3D. For the same opacity law used the effect is even stronger in 3D than in the corresponding 2D simulations, due to a slightly thinner disc. Finally, we demonstrate the extent of the torque reversal by calculating a sequence of planet masses. Through full 3D simulations of embedded planets in viscous, radiative discs we confirm that the migration can be directed outwards up to planet masses of about 33 M_earth. Hence, the effect may help to resolve the problem of too rapid inward migration of planets during their type-I phase.
16 pages, Astronomy&Astrophysics, in press
References in corpus (9)
- Toward a Deterministic Model of Planetary Formation V. Accumulation Near the Ice Line
- Halting Type I planet migration in non-isothermal disks
- On the corotation torque in a radiatively inefficient disk
- 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 evolution of eccentric and inclined protoplanets embedded in protoplanetary disks
- Type I Planet Migration in Nearly Laminar Disks
- Influence of an inner disc on the orbital evolution of massive planets migrating in resonance
- Growing and moving low-mass planets in non-isothermal disks
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- Planet-disk interaction and orbital evolution
- A torque formula for non-isothermal Type I planetary migration - II. Effects of diffusion
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- Breaking the Chains: Hot Super-Earth systems from migration and disruption of compact resonant chains
- Planetary population synthesis coupled with atmospheric escape: a statistical view of evaporation
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- Characterization of exoplanets from their formation II: The planetary mass-radius relationship
- FARGO3D: A new GPU-oriented MHD code
- Migration Traps in Disks Around Supermassive Black Holes
- Transitional Disks as Signposts of Young, Multiplanet Systems
- Formation of planetary systems by pebble accretion and migration: Growth of gas giants
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- Stellar irradiated discs and implications on migration of embedded planets I: equilibrium discs
- Convective Overstability in radially stratified accretion disks under thermal relaxation
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- Contemporary formation of early solar system planetesimals at two distinct radial locations
- Global Models of Planet Formation and Evolution
- Dynamical corotation torques on low-mass planets
- Migration of Earth-size planets in 3D radiative discs
- Highly inclined and eccentric massive planets I: Planet-disc interactions
- Impacts of planet migration models on planetary populations. Effects of saturation, cooling and stellar irradiation
- Three-dimensional Disk-Planet Torques in a Locally Isothermal Disk
- Stellar irradiated discs and implications on migration of embedded planets II: accreting-discs
- Improved torque formula for low and intermediate mass planetary migration
- Outward Migration of Jupiter and Saturn in Evolved Gaseous Disks
- Rings and gaps in the disc around Elias 24 revealed by ALMA
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- Single peaked CO emission line profiles from the inner regions of protoplanetary disks
- Three-Dimensional Radiation-Hydrodynamics Calculations of the Envelopes of Young Planets Embedded in Protoplanetary Disks
- Modelling Circumbinary Planets: The case of Kepler-38
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- A conservative orbital advection scheme for simulations of magnetized shear flows with the PLUTO code
- Type I planet migration in nearly laminar disks - long term behavior
- Formation, Orbital and Internal Evolutions of Young Planetary Systems
- A Parameter Study for Baroclinic Vortex Amplification
- Accretion of Uranus and Neptune from inward-migrating planetary embryos blocked by Jupiter and Saturn
- Range of outward migration and influence of the disc's mass on the migration of giant planet cores
- Formation of planetary cores at Type I migration traps
- The Effect of an Early Planetesimal-Driven Migration of the Giant Planets on Terrestrial Planet Formation
- Migration of planets embedded in a circumstellar disk
- A general model of resonance capture in planetary systems: First and second order resonances
- Hydrodynamical Simulations of Black-Hole Binary Formation in AGN Disks
- Efficiency of thermal relaxation by radiative processes in protoplanetary discs: constraints on hydrodynamic turbulence
- Quasi-static contraction during runaway gas accretion onto giant planets
- Interactions Between Moderate- and Long-Period Giant Planets: Scattering Experiments for Systems in Isolation and with Stellar Flybys
- Evolution of inclined planets in three-dimensional radiative discs
- Type I planet migration in weakly magnetised laminar discs
- Outward migration of a super-Earth in a disc with outward propagating density waves excited by a giant planet
- Early Dynamical Instabilities in the Giant Planet Systems
- Time evolution of snow regions and planet traps in an evolving protoplanetary disk
- Hot Circumsingle Disks Drive Binary Black Hole Mergers in Active Galactic Nucleus Disks
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- Stellar irradiated discs and implications on migration of embedded planets III: viscosity transitions
- Influence of the water content in protoplanetary discs on planet migration and formation
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- Global 3D radiation-hydrodynamic simulations of gas accretion: The opacity dependent growth of Saturn-mass planets
- Influence of viscosity and the adiabatic index on planetary migration
- Observability of Forming Planets and their Circumplanetary Disks I. -- Parameter Study for ALMA
- Simultaneous formation of Solar System giant planets
- Evolution of circumbinary planets around eccentric binaries: The case of Kepler-34
- Thermal torque effects on the migration of growing low-mass planets
- Runaway gas accretion and gap opening versus type~I migration
- The Diversity of Planetary Systems Architectures: Contrasting Theory with Observations
- Recent developments in planet migration theory
- Gaps and Rings in Protoplanetary Disks with Realistic Thermodynamics: The Critical Role of In-Plane Radiation Transport
- Eccentricity excitation and merging of planetary embryos heated by pebble accretion
- Trapping of giant-planet cores - I. Vortex aided trapping at the outer dead zone edge
- Three-dimensional Global Simulations of Type-II Planet-disk Interaction with a Magnetized Disk Wind: I. Magnetic Flux Concentration and Gap Properties
- Migration of Jupiter mass planets in low viscosity discs
- Outwards migration for planets in stellar irradiated 3D discs
- Predicting the Configuration of Planetary System: KOI-152 Observed by Kepler
- On the structure and mass delivery towards circumplanetary discs
- Setting the Stage: Planet formation and Volatile Delivery
- Formation of planetary systems by pebble accretion and migration: Hot super-Earth systems from breaking compact resonant chains
- Three-dimensional modeling of radiative disks in binaries
- Low-mass planet migration in three dimensional wind-driven inviscid discs: a negative corotation torque
- 3D Simulations of Planet Trapping at Disc-Cavity Boundaries
- Low-mass planets in nearly inviscid disks: Numerical treatment
- The effects of a magnetic field on planetary migration in laminar and turbulent discs
- On the formation of the Kepler-10 planetary system
- Circumstellar disks and planets. Science cases for next-generation optical/infrared long-baseline interferometers
- Forming Habitable Planets around Dwarf Stars: Application to OGLE-06-109L
- Type I Migration in Radiatively Efficient Discs
- The water-ice line as a birthplace of planets: Implications of a species-dependent dust fragmentation threshold
- Formation of Terrestrial Planets
- Influence of migration models and thermal torque on planetary growth in the pebble accretion scenario
- Three-temperature radiation hydrodynamics with PLUTO: Tests and applications to protoplanetary disks
- Migration of Jupiter mass planets in discs with laminar accretion flows
- How cooling influences circumbinary discs
- Oscillatory migration of accreting protoplanets driven by a 3D distortion of the gas flow
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- A recipe for orbital eccentricity damping in the type-I regime for low viscosity 2D-discs
- Influence of grain sizes and composition on the contraction rates of planetary envelopes and on planetary migration
- Episodic accretion and mergers during growth of massive protostars
- On the migration of three planets in a protoplanetary disc and the formation of chains of mean motion resonances
- Super-Earths as Failed Cores in Orbital Migration Traps
- Three-temperature radiation hydrodynamics with PLUTO: Thermal and kinematic signatures of accreting protoplanets
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- Gas accretion onto Jupiter mass planets in discs with laminar accretion flows
- Effects of Radiative Diffusion on the Dynamical Corotation Torque in Three-Dimensional Protoplanetary Disks
- On the orbital evolution of a pair of giant planets in mean motion resonance
- DR Tau: Temporal variability of the brightness distribution in the potential planet-forming region
- Modeling Planetary System Formation with N-Body Simulations: Role of Gas Disk and Statistics Comparing to Observations
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- On the formation of planetary systems in photoevaporating transition discs
- On the formation of multiple dust-trapping rings in the inner Solar system
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- Dust back-reaction on gas around planets modifies the cold thermal torque
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