Fly-by encounters between two planetary systems I: solar system analogues
arXiv:1902.09804 · doi:10.1093/mnras/stz1794
Abstract
Stars formed in clusters can encounter other stars at close distances. In typical open clusters in the Solar neighbourhood containing hundreds or thousands of member stars, ten to twenty per cent of Solar-mass member stars are expected to encounter another star at distances closer than 100 au. These close encounters strongly perturb the planetary systems, directly causing ejection of planets or their capture by the intruding star, as well as exciting the orbits. Using extensive -body simulations, we study such fly-by encounters between two Solar System analogues, each with four giant planets from Jupiter to Neptune. We quantify the rates of loss and capture immediately after the encounter, e.g., the Neptune analogue is lost in one in four encounters within 100 au, and captured by the flying-by star in one in twelve encounters. We then perform long-term (up to 1 Gyr) simulations investigating the ensuing post-encounter evolution. We show that large numbers of planets are removed from systems due to planet--planet interactions and that captured planets further enhance the system instability. While encounters can initially leave a planetary system containing more planets by inserting additional ones, the long-term instability causes a net reduction in planet number. A captured planet ends up on a retrograde orbit in half of the runs in which it survives for 1 Gyr; also, a planet bound to its original host star but flipped during the encounter may survive. Thus, encounters between planetary systems are a channel to create counter-rotating planets, This would happen in around 1% of systems, and such planets are potentially detectable through astrometry or direct imaging.
accepted to MNRAS
References in corpus (13)
- Dynamical Outcomes of Planet-Planet Scattering
- One or more bound planets per Milky Way star from microlensing observations
- Astrometric exoplanet detection with Gaia
- Dynamics of Planetary Systems in Star Clusters
- Close encounters in young stellar clusters: implications for planetary systems in the solar neighbourhood
- Cross Sections for Planetary Systems Interacting with Passing Stars and Binaries
- Stability of Multiplanetary Systems in Star Clusters
- Sizes of protoplanetary discs after star-disc encounters
- Survivability of planetary systems in young and dense star clusters
- Cluster dynamics largely shapes protoplanetary disc sizes
- Rapid destruction of protoplanetary discs due to externalphotoevaporation in star-forming regions
- Hint of curvature in the orbital motion of the exoplanet 51 Eridani b using 3 years of VLT/SPHERE monitoring
- Effects of inclined star-disk encounter on protoplanetary disk size