Dynamics of Planetary Systems in Star Clusters
arXiv:astro-ph/0612757 · doi:10.1088/0004-637X/697/1/458
Abstract
At least 10-15% of nearby sun-like stars have known Jupiter-mass planets. In contrast, very few planets are found in mature open and globular clusters such as the Hyades and 47 Tuc. We explore here the possibility that this dichotomy is due to the post-formation disruption of planetary systems associated with the stellar encounters in long-lived clusters. One supporting piece of evidence for this scenario is the discovery of freely floating low-mass objects in star forming regions. We use two independent numerical approaches, a hybrid Monte Carlo and a direct -body method, to simulate the impact of the encounters. We show that the results of numerical simulations are in reasonable agreement with analytical determinations in the adiabatic and impulsive limits. They indicate that distant stellar encounters generally do not significantly modify the compact and nearly circular orbits. However, moderately close stellar encounters, which are likely to occur in dense clusters, can excite planets' orbital eccentricity and induce dynamical instability in systems which are closely packed with multiple planets. We compute effective cross sections for the dissolution of planetary systems and show that, for all initial eccentricities, dissolution occurs on time scales which are longer than the dispersion of small stellar associations, but shorter than the age of typical open and globular clusters. Although it is much more difficult to disrupt short-period planets, close encounters can excite modest eccentricity among them, such that subsequent tidal dissipation leads to orbital decay, tidal inflation, and even disruption of the close-in planets.
57 pages, 14 figures, 4 tables, major revision by authors, accepted for publication at the Astrophysical Journal (ApJ)
References in corpus (3)
Cited by in corpus (40)
- Cross Sections for Planetary Systems Interacting with Passing Stars and Binaries
- Stability of Multiplanetary Systems in Star Clusters
- Can habitable planets form in clustered environments?
- K2 Discovers a Busy Bee: An Unusual Transiting Neptune Found in the Beehive Cluster
- The properties of discs around planets and brown dwarfs as evidence for disc fragmentation
- A Tale of Planet Formation: From Dust to Planets
- On the occurrence of galaxy harassment
- Multiple Stellar Evolution: a population synthesis algorithm to model the stellar, binary, and dynamical evolution of multiple-star systems
- Close encounters involving free-floating planets in star clusters
- The signatures of the parental cluster on field planetary systems
- How fast do young star clusters expel their natal gas?: Estimating the upper limit of the gas expulsion time-scale
- The puzzling source IGR J17361-4441 in NGC 6388: a possible planetary tidal disruption event
- Fly-by encounters between two planetary systems I: solar system analogues
- Analytic computation of the secular effects of encounters on a binary: features arising from second-order perturbation theory
- Hot Jupiters driven by high-eccentricity migration in globular clusters
- Tidal Evolution of the Evection Resonance/Quasi-Resonance and the Angular Momentum of the Earth-Moon System
- On the survival of resonant and non-resonant planetary systems in star clusters
- Embryo impacts and gas giant mergers II: Diversity of Hot Jupiters' internal structure
- On the long-term stability of the Solar System in the presence of weak perturbations from stellar flybys
- Supernova enrichment of planetary systems in low-mass star clusters
- The dynamical evolution of low-mass hydrogen-burning stars, brown dwarfs and planetary-mass objects formed through disc fragmentation
- Cradle(s) of the Sun
- Hot Jupiter and ultra-cold Saturn formation in dense star clusters
- Exciting spiral arms in protoplanetary discs from flybys
- 8 in 10 Stars in the Milky Way Bulge Experience Stellar Encounters Within 1000 AU in a Gigayear
- Birth cluster simulations of planetary systems with multiple super-Earths: initial conditions for white dwarf pollution drivers
- Making hot Jupiters in stellar clusters: the importance of binary exchange
- HST survey of the Orion Nebula Cluster in the HO 1.4 m absorption band: III. The population of sub-stellar binary companions
- Rendez-vous with massive interstellar objects, as triggers of destabilisation
- The long-term evolution of main-sequence binaries in DRAGON simulations
- A Search for Transiting Planets in the Globular Cluster M4 with K2: Candidates and Occurrence Limits
- Planetary Systems in a Star Cluster II: intermediate-mass black holes and planetary systems
- Generation of inclined protoplanetary discs and misaligned planets through mass accretion I: Coplanar secondary discs
- Close encounters with the Death Star: Interactions between collapsed bodies and the Solar System
- Stability of planetary systems within the S-star cluster: the Solar system analogues
- Effective two-body scatterings around a massive object
- Birth environment of circumbinary planets: are there CBPs on the inclined orbits?
- A machine learning framework to generate star cluster realisations
- The Great Planetary Heist: Theft and capture in star-forming regions
- Explosive ejections generated by gravitational interactions