Stability of Multiplanetary Systems in Star Clusters
arXiv:1706.03789 · doi:10.1093/mnras/stx1464
Abstract
Most stars form in star clusters and stellar associated. To understand the roles of star cluster environments in shaping the dynamical evolution of planetary systems, we carry out direct -body simulations of four planetary systems models in three different star cluster environments with respectively N=2k, 8k and 32k stars. In each cluster, an ensemble of initially identical planetary systems are assigned to solar-type stars with and evolved for 50~Myr. We found that following the depletion of protoplanetary disks, external perturbations and planet-planet interactions are two driving mechanisms responsible for the destabilization of planetary systems. The planet survival rate varies from in the N=2k cluster to in the N=32k cluster, which suggests that most planetary systems can indeed survive in low-mass clusters, except in the central regions. We also find that planet ejections through stellar encounters are cumulative processes, as only of encounters are strong enough to excite the eccentricity by . Short-period planets can be perturbed through orbit crossings with long-period planets. When taking into account planet-planet interactions, the planet ejection rate nearly doubles, and therefore multiplicity contributes to the vulnerability of planetary systems. In each ensemble, of planetary orbits become retrograde due to random directions of stellar encounters. Our results predict that young low-mass star clusters are promising sites for next-generation planet surveys, yet low planet detection rates are expected in dense globular clusters such as 47 Tuc. Nevertheless, planets in denser stellar environments are likely to have shorter orbital periods, which enhances their detectability.
19 pages, 13 figures, 4 tables, accepted for publication in MNRAS
References in corpus (12)
- Dynamical Outcomes of Planet-Planet Scattering
- Planets around evolved intermediate-mass stars. I. Two substellar companions in the open clusters NGC 2423 and NGC 4349
- A multiphysics and multiscale software environment for modeling astrophysical systems
- Post-Oligarchic Evolution of Protoplanetary Embryos and the Stability of Planetary Systems
- Dynamics of Planetary Systems in Star Clusters
- The effect of spiral arm passages on the evolution of stellar clusters
- Cross Sections for Planetary Systems Interacting with Passing Stars and Binaries
- Tidally induced brown dwarf and planet formation in circumstellar discs
- The formation of the solar system
- Close encounters involving free-floating planets in star clusters
- The dynamical evolution of low-mass hydrogen-burning stars, brown dwarfs and planetary-mass objects formed through disc fragmentation
- How does a low-mass cut-off in the stellar IMF affect the evolution of young star clusters?
Cited by in corpus (15)
- TESS Hunt for Young and Maturing Exoplanets (THYME) II: A 17 Myr Old Transiting Hot Jupiter in the Sco-Cen Association
- Survivability of planetary systems in young and dense star clusters
- Planet formation around M dwarfs via disc instability: Fragmentation conditions and protoplanet properties
- 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
- How fast do young star clusters expel their natal gas?: Estimating the upper limit of the gas expulsion time-scale
- Fly-by encounters between two planetary systems I: solar system analogues
- Hot Jupiters driven by high-eccentricity migration in globular clusters
- On the survival of resonant and non-resonant planetary systems in star clusters
- Encounters involving planetary systems in birth environments: the significant role of binaries
- 8 in 10 Stars in the Milky Way Bulge Experience Stellar Encounters Within 1000 AU in a Gigayear
- SiMon: Simulation Monitor for Computational Astrophysics
- Enlarging habitable zones around binary stars in hostile environments
- A Code to Make Your Own Synthetic ObservaTIonS (MYOSOTIS)
- Birth environment of circumbinary planets: are there CBPs on the inclined orbits?