Formation and structure of the three Neptune-mass planets system around HD69830
arXiv:astro-ph/0607175 · doi:10.1051/0004-6361:20065697
Abstract
Since the discovery of the first giant planet outside the solar system in 1995 (Mayor & Queloz 1995), more than 180 extrasolar planets have been discovered. With improving detection capabilities, a new class of planets with masses 5-20 times larger than the Earth, at close distance from their parent star is rapidly emerging. Recently, the first system of three Neptune-mass planets has been discovered around the solar type star HD69830 (Lovis et al. 2006). Here, we present and discuss a possible formation scenario for this planetary system based on a consistent coupling between the extended core accretion model and evolutionary models (Alibert et al. 2005a, Baraffe et al. 2004,2006). We show that the innermost planet formed from an embryo having started inside the iceline is composed essentially of a rocky core surrounded by a tiny gaseous envelope. The two outermost planets started their formation beyond the iceline and, as a consequence, accrete a substantial amount of water ice during their formation. We calculate the present day thermodynamical conditions inside these two latter planets and show that they are made of a rocky core surrounded by a shell of fluid water and a gaseous envelope.
Accepted in AA Letters
Cited by in corpus (26)
- Habitable planets around the star Gl 581?
- Transience of hot dust around sun-like stars
- Ocean Planet or Thick Atmosphere: On the Mass-Radius Relationship for Solid Exoplanets with Massive Atmospheres
- Observable Consequences of Planet Formation Models in Systems with Close-in Terrestrial Planets
- Hot super-Earths and giant planet cores from different migration histories
- Global Models of Planet Formation and Evolution
- On the Nature of the Dust in the Debris Disk Around HD69830
- Could we identify hot Ocean-Planets with CoRoT, Kepler and Doppler velocimetry?
- A new Neptune-mass planet orbiting HD 219828
- New Worlds on the Horizon: Earth-Sized Planets Close to Other Stars
- Tests of In-Situ Formation Scenarios for Compact Multiplanet Systems
- The Secular Evolution and Dynamical Architecture of the Neptunian Triplet Planetary System HD 69830
- Chemical Diversity of Super-Earths As a Consequence of Formation
- On the equilibrium rotation of Earth-like extra-solar planets
- Kuiper belt structure around nearby super-Earth host stars
- New methods for large dynamical range problems in planetary formation
- Spin evolution of Earth-sized exoplanets, including atmospheric tides and core-mantle friction
- Limits on additional planetary companions to OGLE-2005-BLG-390L
- From Dust to Planets I: Planetesimal and Embryo Formation
- Dynamical Simulations of the Planetary System HD69830
- In Situ Models for Planet Assembly around Cool stars
- Super-Earths as Failed Cores in Orbital Migration Traps
- Formation of Planetary Populations III: Core Composition & Atmospheric Evaporation
- Millimagnitude Photometry for Transiting Extrasolar Planetary Candidates IV: The Puzzle of the Extremely Red OGLE-TR-82 Primary Solved
- Planetary system architectures with low-mass inner planets: Direct imaging exploration of mature systems beyond 1 au
- Diversity of Exoplanets