On the survival of resonant and non-resonant planetary systems in star clusters
arXiv:2007.11601 · doi:10.1093/mnras/staa2047
Abstract
Despite the discovery of thousands of exoplanets in recent years, the number of known exoplanets in star clusters remains tiny. This may be a consequence of close stellar encounters perturbing the dynamical evolution of planetary systems in these clusters. Here, we present the results from direct -body simulations of multiplanetary systems embedded in star clusters containing , and stars. The planetary systems, which consist of the four Solar system giant planets Jupiter, Saturn, Uranus, and Neptune, are initialized in different orbital configurations, to study the effect of the system architecture on the dynamical evolution of the entire planetary system, and on the escape rate of the individual planets. We find that the current orbital parameters of the Solar system giants (with initially circular orbits, as well as with present-day eccentricities) and a slightly more compact configuration, have a high resilience against stellar perturbations. A configuration with initial mean-motion resonances of 3:2, 3:2, and 5:4 between the planets, which is inspired by the Nice model, and for which the two outermost planets are usually ejected within the first yr, is in many cases stabilized due to the removal of the resonances by external stellar perturbation and by the rapid ejection of at least one planet. Assigning all planets the same mass of 1 Jovian mass almost equalizes the survival fractions. Our simulations reproduce the broad diversity amongst observed exoplanet systems. We find not only many very wide and/or eccentric orbits, but also a significant number of (stable) retrograde orbits.
21 pages, 21 figures, accepted by MNRAS
References in corpus (16)
- Dynamics of Planetary Systems in Star Clusters
- Zodiacal Exoplanets in Time (ZEIT) IV: seven transiting planets in the Praesepe cluster
- Close encounters in young stellar clusters: implications for planetary systems in the solar neighbourhood
- The Natural History of 'Oumuamua
- Stability of Multiplanetary Systems in Star Clusters
- Cross Sections for Planetary Systems Interacting with Passing Stars and Binaries
- Zodiacal Exoplanets in Time (ZEIT) VI: a three-planet system in the Hyades cluster including an Earth-sized planet
- K2 Discovers a Busy Bee: An Unusual Transiting Neptune Found in the Beehive Cluster
- Survivability of planetary systems in young and dense star clusters
- Close encounters involving free-floating planets in star clusters
- The fate of planetesimal discs in young open clusters: implications for 1I/'Oumuamua, the Kuiper belt, the Oort cloud and more
- The signatures of the parental cluster on field planetary systems
- Gargantuan chaotic gravitational three-body systems and their irreversibility to the Planck length
- Dynamical Constraints on the Origin of Multiple Stellar Populations in Globular Clusters
- A hypothesis for the rapid formation of planets
- SiMon: Simulation Monitor for Computational Astrophysics
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- A photospheric and chromospheric activity analysis of the quiescent retrograde-planet host Octantis A
- On the stability of planetary orbits in binary star systems I. The S-type orbits
- Stability of planetary systems within the S-star cluster: the Solar system analogues
- The Great Planetary Heist: Theft and capture in star-forming regions