The dynamical fate of planetary systems in young star clusters
arXiv:1508.01593 · doi:10.1093/mnras/stv1832
Abstract
We carry out N-body simulations to examine the effects of dynamical interactions on planetary systems in young open star clusters. We explore how the planetary populations in these star clusters evolve, and how this evolution depends on the initial amount of substructure, the virial ratio, the cluster mass and density, and the initial semi-major axis of the planetary systems. The fraction of planetary systems that remains intact as a cluster member, fbps, is generally well-described by the functional form fbps=f0(1+[a/a0]^c)^-1, where (1-f0) is the fraction of stars that escapes from the cluster, a0 the critical semi-major axis for survival, and c a measure for the width of the transition region. The effect of the initial amount of substructure over time can be quantified as fbps=A(t)+B(D), where A(t) decreases nearly linearly with time, and B(D) decreases when the clusters are initially more substructured. Provided that the orbital separation of planetary systems is smaller than the critical value a0, those in clusters with a higher initial stellar density (but identical mass) have a larger probability of escaping the cluster intact. These results help us to obtain a better understanding of the difference between the observed fractions of exoplanets-hosting stars in star clusters and in the Galactic field. It also allows us to make predictions about the free-floating planet population over time in different stellar environments.
14 pages, 9 figures, accepted for publication in MNRAS
References in corpus (25)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Gas expulsion and the destruction of massive young clusters
- Dynamical mass segregation on a very short timescale
- NBODY6++GPU: Ready for the gravitational million-body problem
- Direct Imaging and Spectroscopy of a Planetary Mass Candidate Companion to a Young Solar Analog
- Dynamics of Planetary Systems in Star Clusters
- Can giant planets form by gravitational fragmentation of discs?
- The primordial binary population II: Recovering the binary population for intermediate mass stars in Sco OB2
- Discovery of a wide planetary-mass companion to the young M3 star GU Psc
- Close encounters in young stellar clusters: implications for planetary systems in the solar neighbourhood
- The Evolution of the Multiplicity of Embedded Protostars I: Sample Properties and Binary Detections
- The Evolution of the Multiplicity of Embedded Protostars II: Binary Separation Distribution & Analysis
- How Sedna and family were captured in a close encounter with a solar sibling
- The AstraLux Multiplicity Survey: Extension to Late M-dwarfs
- Identifying star clusters in a field: A comparison of different algorithms
- Dynamics versus structure: breaking the density degeneracy in star formation
- Close encounters involving free-floating planets in star clusters
- The Frequency of Large Radius Hot and Very Hot Jupiters in omega Centauri
- Spectroscopy of planetary mass brown dwarfs in Orion
- Deep MMT Transit Survey of the Open Cluster M37 IV: Limit on the Fraction of Stars With Planets as Small as 0.3 R_J
- A new search for planet transits in NGC 6791
- The dynamical evolution of low-mass hydrogen-burning stars, brown dwarfs and planetary-mass objects formed through disc fragmentation
- Block Time Step Storage Scheme for Astrophysical N-body Simulations
- How does a low-mass cut-off in the stellar IMF affect the evolution of young star clusters?
- Planetary Systems in Star Clusters
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- Composition of Early Planetary Atmospheres I: Connecting Disk Astrochemistry to the Formation of Planetary Atmospheres
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- Connecting planet formation and astrochemistry: A main sequence for C/O in hot-exoplanetary atmospheres
- Planets In Young Massive Clusters: On the survivability of planets in young massive clusters and its implication of planet orbital architectures in globular clusters
- Survivability of planetary systems in young and dense star clusters
- A Tale of Planet Formation: From Dust to Planets
- Friends of Hot Jupiters III: An Infrared Spectroscopic Search for Low-Mass Stellar Companions
- Secular dynamics of hierarchical multiple systems composed of nested binaries, with an arbitrary number of bodies and arbitrary hierarchical structure. II. External perturbations: flybys and supernovae
- Mass transfer between debris discs during close stellar encounters
- Planetary systems in a star cluster I: the Solar system scenario
- Survival Rates of Planets in Open Clusters: the Pleiades, Hyades, and Praesepe clusters
- Hot Jupiters driven by high-eccentricity migration in globular clusters
- On the survival of resonant and non-resonant planetary systems in star clusters
- External photoevaporation of protoplanetary discs: does location matter?
- Supernova enrichment of planetary systems in low-mass star clusters
- On the long-term stability of the Solar System in the presence of weak perturbations from stellar flybys
- Linking the formation and fate of exo-Kuiper belts within solar system analogues
- Rogue planets and brown dwarfs: Predicting the populations of free-floating planetary mass objects observable with JWST
- Stellar Flybys Interrupting Planet-Planet Scattering Generates Oort Planets
- The long-term dynamical evolution of disc-fragmented multiple systems in the Solar Neighborhood
- 8 in 10 Stars in the Milky Way Bulge Experience Stellar Encounters Within 1000 AU in a Gigayear
- On the origin of planetary-mass objects in NGC1333
- DESTINY: Database for the Effects of STellar encounters on dIsks and plaNetary sYstems
- Influence of planets on debris disks in star clusters I: the 50 AU Jupiter
- Rendez-vous with massive interstellar objects, as triggers of destabilisation
- On the survivability of a population of gas giant planets on wide orbits
- Close encounters with the Death Star: Interactions between collapsed bodies and the Solar System
- Simulation of images of protoplanetary disks after collision with free-floating planets
- Dynamical evolution of massless particles in star clusters with NBODY6++GPU-MASSLESS: II. The long-term evolution of free-floating comets
- Prospects for Reconstructing the Free-floating Planet Mass Function at the Population Level with the Nancy Grace Roman Space Telescope
- The Great Planetary Heist: Theft and capture in star-forming regions
- Detailed Abundances of Planet-Hosting Open Clusters. The Praesepe (Beehive) Cluster
- The origin and evolution of wide Jupiter Mass Binary Objects in young stellar clusters