Fu Ori outbursts and the planet-disc mass exchange
arXiv:1110.6316 · doi:10.1111/j.1365-2966.2012.21612.x
Abstract
It has been recently proposed that giant protoplanets migrating inward through the disc more rapidly than they contract could be tidally disrupted when they fill their Roche lobes ~ 0.1 AU away from their parent protostars. Here we consider the process of mass and angular momentum exchange between the tidally disrupted planet and the surrounding disc in detail. We find that the planet's adiabatic mass-radius relation and its ability to open a deep gap in the disc determine whether the disruption proceeds as a sudden runaway or a balanced quasi-static process. In the latter case the planet feeds the inner disc through its Lagrangian L1 point like a secondary star in a stellar binary system. As the planet loses mass it gains specific angular momentum and normally migrates in the outward direction until the gap closes. Numerical experiments show that planet disruption outbursts are preceded by long "quiescent" periods during which the disc inward of the planet is empty. The hole in the disc is created when the planet opens a deep gap, letting the inner disc to drain onto the star while keeping the outer one stalled behind the planet. We find that the mass-losing planet embedded in a realistic protoplanetary disc spawns an extremely rich set of variability patterns. In a subset of parameter space, there is a limit cycle behaviour caused by non-linear interaction between the planet mass loss and the disc hydrogen ionisation instability. We suggest that tidal disruptions of young massive planets near their stars may be responsible for the observed variability of young accreting protostars such as FU Ori, EXor and T Tauri stars in general.
revised and resubmitted to MNRAS. 23 pages, 16 figures
References in corpus (14)
- Accretion disc viscosity: how big is alpha?
- On the Luminosity of Young Jupiters
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- The Burst Mode of Protostellar Accretion
- Challenges in Forming Planets by Gravitational Instability: Disk Irradiation and Clump Migration, Accretion & Tidal Destructio
- Characterising the Gravitational Instability in Cooling Accretion Discs
- Rapid inward migration of planets formed by gravitational instability
- The Hot Inner Disk of FU Ori
- Can giant planets form by gravitational fragmentation of discs?
- The Jeans Mass as a Fundamental Measure of Self-Gravitating Disc Fragmentation and Initial Fragment Mass
- Migration of Gas Giant Planets in Gravitationally Unstable Disks
- Hot Super Earths: disrupted young jupiters?
- The Rapid Outbursting Star GM Cep: An EX-or in Tr 37?
- Resolving the Sub-AU-Scale Gas and Dust Distribution in FU Orionis Sources
Cited by in corpus (59)
- Variable protostellar accretion with episodic bursts
- On the existence of accretion-driven bursts in massive star formation
- Towards a Population Synthesis Model of Objects formed by Self-Gravitating Disc Fragmentation and Tidal Downsizing
- The Luminosities of Protostars in the Spitzer c2d and Gould Belt Legacy Clouds
- CCAT-prime Collaboration: Science Goals and Forecasts with Prime-Cam on the Fred Young Submillimeter Telescope
- Mass-Loss Evolution of Close-In Exoplanets: Evaporation of Hot Jupiters and the Effect on Population
- Identification of Young Stellar Object candidates in the DR2 x AllWISE catalogue with machine learning methods
- An Exoplanet's Response to Anisotropic Stellar Mass-Loss During Birth and Death
- Circumstellar Disks of the Most Vigorously Accreting Young Stars
- ARES V: No Evidence For Molecular Absorption in the HST WFC3 Spectrum of GJ 1132 b
- Dawes Review. The tidal downsizing hypothesis of planet formation
- Identifying and Analysing Protostellar Disc Fragments in Smoothed Particle Hydrodynamics Simulations
- Burst occurrence in young massive stellar objects
- Tidal Downsizing model. I. Numerical methods: saving giant planets from tidal disruptions
- Gravitational fragmentation and formation of giant protoplanets on tens-of-au orbits
- The Dynamical Fate of Self-Gravitating Disc Fragments After Tidal Downsizing
- Luminosity outburst chemistry in protoplanetary discs: going beyond standard tracers
- Core-assisted gas capture instability: a new mode of giant planet formation by gravitationally unstable discs
- Knotty protostellar jets as a signature of episodic protostellar accretion?
- Distinguishing between different mechanisms of FU-Orionis-type luminosity outbursts
- Tidal Downsizing Model. III. Planets from sub-Earths to Brown Dwarfs: structure and metallicity preferences
- Young Faithful: The Eruptions of EC 53 as It Cycles through Filling and Draining the Inner Disk
- Positive metallicity correlation for coreless giant planets
- A 1.3 mm SMA Survey of 29 Variable Young Stellar Objects
- Accretion bursts in magnetized gas-dust protoplanetary disks
- Metal loading of giant gas planets
- EXor outbursts from disk amplification of stellar magnetic cycles
- A concordant scenario to explain FU Ori from deep centimeter and millimeter interferometric observations
- Parameter study for the burst mode of accretion in massive star formation
- On the diversity in mass and orbital radius of giant planets formed via disk instability
- The JCMT Transient Survey: Identifying Submillimetre Continuum Variability over Several Year Timescales Using Archival JCMT Gould Belt Survey Observations
- On the episodic excursions of massive protostars in the Hertzsprung-Russell diagram
- Mass transport from the envelope to the disk of V346 Nor: a case study for the luminosity problem in an FUor-type young eruptive star
- The circumstellar environment around the embedded protostar EC 53
- 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
- Magnetically-activated accretion outbursts of pre-main sequence discs
- Inferring possible magnetic field strength of accreting inflows in EXor-type objects from scaled laboratory experiments
- Insights into the inner regions of the FU Orionis disc
- Tidal Downsizing Model. IV. Destructive feedback in planets
- Constraining the initial planetary population in the gravitational instability model
- TW Hya: an old protoplanetary disc revived by its planet
- Extreme evaporation of planets in hot thermally unstable protoplanetary discs: the case of FU Ori
- Gap opening by planets in discs with magnetised winds
- The accretion burst of the massive young stellar object G323.46 -0.08
- Episodic accretion and mergers during growth of massive protostars
- Absence of Significant Cool Disks in Young Stellar Objects Exhibiting Repetitive Optical Outbursts
- Identifying Variability in Deeply Embedded Protostars with ALMA and CARMA
- The influence of metallicity on a combined stellar and disk evolution
- On the origin of wide-orbit ALMA planets: giant protoplanets disrupted by their cores
- The burst mode of accretion in massive star formation with stellar inertia
- Accretion Burst Crystallizes Silicates in a Planet-Forming Disk
- The Role of Thermal Instability in Accretion Outbursts in High-Mass Stars
- Hydrogen-loosing planets in transition discs around young protostars
- The paradox of youth for ALMA planet candidates
- Modeling Circumstellar Disc Fragmentation and Episodic Protostellar Accretion with Smoothed Particle Hydrodynamics in Cell
- Episodic accretion in high-mass star formation: An analysis of thermal instability for axially symmetric disks
- The role of atmospheric outflows in the migration of hot Jupiters
- Observational Signatures of Planetary Tidal Disruption Events Around Solar-Mass Stars