Migration and gas accretion scenarios for the Kepler 16, 34 and 35 circumbinary planets
arXiv:1307.0713 · doi:10.1051/0004-6361/201321777
Abstract
Several circumbinary planets have been detected by the Kepler mission. Recent work has emphasized the difficulty of forming these planets at their observed locations. It has been suggested that these planets formed further out in their discs and migrated in to locations where they are observed. We examine the orbital evolution of planets embedded in circumbinary disc models for the three systems Kepler-16, Kepler-34 and Kepler-35. The aims are: to explore the plausibility of a formation scenario in which cores form at large distances from the binaries and undergo inward migration and gas accretion as the gas disc disperses; to determine which sets of disc parameters lead to planets whose final orbits provide reasonable fits to the observed systems. We performed simulations of a close binary system interacting with circumbinary discs with differing aspect ratios, and viscous stress parameters. Once the binary+disc system reaches quasi-equilibrium we embed a planet in the disc and examine its evolution under the action of binary and disc forces. We consider fully-formed planets with masses equal to those inferred from Kepler data, and low-mass cores that migrate and accrete gas while the gas disc is being dispersed. A typical outcome for all systems is stalling of inward migration as the planet enters the inner cavity formed by the binary system. The circumbinary disc becomes eccentric and the disc eccentricity forces the planet into a noncircular orbit. For each of the Kepler-16b, Kepler-34b and Kepler-35b systems we obtain planets whose parameters agree reasonably well with the observational data. The simulations presented here provide support for a formation scenario in which a core forms, migrates inward and accretes gas, but accurate fitting of the observed Kepler systems is likely to require disc models that are significantly more sophisticated in terms of their input physics.
Accepted for publication in A&A
References in corpus (12)
- The Transiting Circumbinary Planets Kepler-34 and Kepler-35
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- A comparative study of disc-planet interaction
- On the corotation torque in a radiatively inefficient disk
- On disc protoplanet interactions in a non-barotropic disc with thermal diffusion
- On the evolution of eccentric and inclined protoplanets embedded in protoplanetary disks
- On the formation and migration of giant planets in circumbinary discs
- Relative velocities among accreting planetesimals in binary systems: the circumbinary case
- On the migration of protoplanets embedded in circumbinary disks
- The dynamical role of the circumplanetary disc in planetary migration
- On the evolution of multiple low mass planets embedded in a circumbinary disc
- Evolution of irradiated Circumbinary Disks
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- SPOTS: The Search for Planets Orbiting Two Stars: II. First constraints on the frequency of sub-stellar companions on wide circumbinary orbits
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- Global N-body simulations of circumbinary planet formation around Kepler-16 and -34 analogues I: Exploring the pebble accretion scenario
- Running The Gauntlet -- Survival of Small Circumbinary Planets Migrating Through Destabilising Resonances
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- Modelling circumbinary protoplanetary disks II. Gas disk feedback on planetesimal dynamical and collisional evolution in the circumbinary systems Kepler-16 and 34
- The scattering outcomes of Kepler circumbinary planets: planet mass ratio
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- A Pluto--Charon Sonata: Dynamical Limits on the Masses of the Small Satellites
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- Orbital stability of two circumbinary planets around misaligned eccentric binaries
- Circumbinary planets: migration, trapping in mean-motion resonances, and ejection
- Three-dimensional evolution of radiative circumbinary discs: the size and shape of the inner cavity
- Multiple Transits during a Single Conjunction: Identifying Transiting Circumbinary Planetary Candidates from TESS
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