Formation and Evolution of Planetary Systems in Presence of Highly Inclined Stellar Perturbers
arXiv:1106.4051 · doi:10.1051/0004-6361/201117193
Abstract
The presence of highly eccentric extrasolar planets in binary stellar systems suggests that the Kozai effect has played an important role in shaping their dynamical architectures. However, the formation of planets in inclined binary systems poses a considerable theoretical challenge, as orbital excitation due to the Kozai resonance implies destructive, high-velocity collisions among planetesimals. To resolve the apparent difficulties posed by Kozai resonance, we seek to identify the primary physical processes responsible for inhibiting the action of Kozai cycles in protoplanetary disks. Subsequently, we seek to understand how newly-formed planetary systems transition to their observed, Kozai-dominated dynamical states. We find that theoretical difficulties in planet formation arising from the presence of a distant companion star, posed by the Kozai effect and other secular perturbations, can be overcome by a proper account of gravitational interactions within the protoplanetary disk. In particular, fast apsidal recession induced by disk self-gravity tends to erase the Kozai effect, and ensure that the disk's unwarped, rigid structure is maintained. Subsequently, once a planetary system has formed, the Kozai effect can continue to be wiped out as a result of apsidal precession, arising from planet-planet interactions. However, if such a system undergoes a dynamical instability, its architecture may change in such a way that the Kozai effect becomes operative. The results presented here suggest that planetary formation in highly inclined binary systems is not stalled by perturbations, arising from the stellar companion. Consequently, planet formation in binary stars is probably no different from that around single stars on a qualitative level. Furthermore, it is likely that systems where the Kozai effect operates, underwent a transient phase of dynamical instability in the past.
9 pages, 7 figures, accepted for publication in Astronomy and Astrophysics
References in corpus (9)
- Hot Stars with Hot Jupiters Have High Obliquities
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- Origins of Eccentric Extrasolar Planets: Testing the Planet-Planet Scattering Model
- Dynamics of the giant planets of the solar system in the gaseous proto-planetary disk and relationship to the current orbital architecture
- Planet-planet scattering in planetesimal disks
- Discerning Exoplanet Migration Models Using Spin-Orbit Measurements
- Models of the Collisional Damping Scenario for Ice Giant Planets and Kuiper Belt Formatio
- On the dynamics and collisional growth of planetesimals in misaligned binary systems
- Debris discs in binaries: a numerical study
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- Friends of Hot Jupiters II: No Correspondence Between Hot-Jupiter Spin-Orbit Misalignment and the Incidence of Directly Imaged Stellar Companions
- The Kozai-Lidov Mechanism in Hydrodynamical Disks
- Friends of Hot Jupiters. IV. Stellar companions beyond 50 AU might facilitate giant planet formation, but most are unlikely to cause Kozai-Lidov migration
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- DREAM I. Orbital architecture orrery
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- Planet formation in stellar binaries I: planetesimal dynamics in massive protoplanetary disks
- Magnetic Origins of the Stellar Mass-Obliquity Correlation in Planetary Systems
- Friends of Hot Jupiters III: An Infrared Spectroscopic Search for Low-Mass Stellar Companions
- Effects of Unseen Additional Planetary Perturbers on Compact Extrasolar Planetary Systems
- Detailed Abundances of Planet-Hosting Wide Binaries. I. Did Planet Formation Imprint Chemical Signatures in the Atmospheres of HD 20782/81?
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- Stellar Spin-Orbit Alignment for Kepler-9, a Multi-transiting Planetary system with Two Outer Planets Near 2:1 Resonance
- Compact planetary systems perturbed by an inclined companion: I. Vectorial representation of the secular model
- Polar alignment of a protoplanetary disc around an eccentric binary III: Effect of disc mass
- 55 Cancri: A Coplanar Planetary System that is Likely Misaligned with its Star
- The inclination of the planetary system relative to the solar equator may be explained by the presence of Planet 9
- Dynamics of Planetary Systems Within Star Clusters: Aspects of the Solar System's Early Evolution
- The Kozai-Lidov Mechanism in Hydrodynamical Disks. III. Effects of Disk Mass and Self-Gravity
- Rossiter-McLaughlin Observations of 55 Cnc e
- The Evolution of Planet-Disk Systems That Are Mildly Inclined to the Orbit of a Binary Companion
- The TESS-Keck Survey: Science Goals and Target Selection
- The Aligned Orbit of the Eccentric Warm Jupiter K2-232b
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- Planetesimal Dynamics in Inclined Binary Systems: The Role of Gas-Disk Gravity
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- Habitability in Different Milky Way Stellar Environments: a Stellar Interaction Dynamical Approach
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- The Dynamics of Tightly-packed Planetary Systems in the Presence of an Outer Planet: case studies using Kepler-11 and Kepler-90
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- Secular Evolution Driven by Massive Eccentric Disks/Rings: An Apsidally Aligned Case
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- ATREIDES I. Embarking on a trek across the exo-Neptunian landscape with the TOI-421 system
- TOI-4336 A b: A temperate sub-Neptune ripe for atmospheric characterization in a nearby triple M-dwarf system
- Dynamics of passing-stars-perturbed binary star systems
- Resonance capture and long-term evolution of planets in binary star systems
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- Orbital Dynamics with the Gravitational Perturbation due to a Disk
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