Forming Close-in Earth-like Planets via a Collision-Merger Mechanism in Late-stage Planet Formation
arXiv:1012.1926 · doi:10.1088/0004-637X/727/1/L5
Abstract
The large number of exoplanets found to orbit their host stars in very close orbits have significantly advanced our understanding of the planetary formation process. It is now widely accepted that such short-period planets cannot have formed {\em in situ}, but rather must have migrated to their current orbits from a formation location much farther from their host star. In the late stages of planetary formation, once the gas in the proto-planetary disk has dissipated and migration has halted, gas-giants orbiting in the inner disk regions will excite planetesimals and planetary embryos, resulting in an increased rate of orbital crossings and large impacts. We present the results of dynamical simulations for planetesimal evolution in this later stage of planet formation. We find that a mechanism is revealed by which the collision-merger of planetary embryos can kick terrestrial planets directly into orbits extremely close to their parent stars.
13 pages, 3 figures, accepted for publication in ApJ Letters
References in corpus (9)
- Migration and the formation of systems of hot super-Earths and Neptunes
- Discovery of a Jupiter/Saturn Analog with Gravitational Microlensing
- Exotic Earths: Forming Habitable Worlds with Giant Planet Migration
- Observable Consequences of Planet Formation Models in Systems with Close-in Terrestrial Planets
- The HARPS search for southern extra-solar planets. XVII. Super-Earth and Neptune-mass planets in multiple planet systems HD47186 and HD181433
- Could the 47 UMa Planetary System be a Second Solar System: predicting the Earth-like planets
- Planet formation around stars of various masses: Hot super-Earths
- Embryo impacts and gas giant mergers I: Dichotomy of Jupiter and Saturn's core mass
- Simulations for Terrestrial Planets Formation
Cited by in corpus (10)
- Planetary population synthesis coupled with atmospheric escape: a statistical view of evaporation
- Compositional imprints in density-distance-time: a rocky composition for close-in low-mass exoplanets from the location of the valley of evaporation
- Debris disks as signposts of terrestrial planet formation
- A Tale of Planet Formation: From Dust to Planets
- Predicting the Configuration of Planetary System: KOI-152 Observed by Kepler
- Terrestrial Planet Formation in the Inclined Systems: Application to OGLE-2006-BLG-109L System
- Tidal evolution of exo-planetary systems: WASP-50, GJ 1214 and CoRoT-7
- The Bimodal Distribution in Exoplanet Radii: Considering Varying Core Compositions and Envelope's Sizes
- Terrestrial Planets Formation under Migration: the Systems near 4:2:1 Mean Motion Resonance
- Possible Origin of the Damocloids:the Scattered Disk or a New Region?