Encounters involving planetary systems in birth environments: the significant role of binaries
arXiv:2008.08842 · doi:10.1093/mnras/staa2945
Abstract
Most stars form in a clustered environment. Both single and binary stars will sometimes encounter planetary systems in such crowded environments. Encounter rates for binaries may be larger than for single stars, even for binary fractions as low as 10-20 per cent. In this work, we investigate scatterings between a Sun-Jupiter pair and both binary and single stars as in young clusters. We first perform a set of simulations of encounters involving wide ranges of binaries and single stars, finding that wider binaries have larger cross sections for the planet's ejection. Secondly, we consider such scatterings in a realistic population, drawing parameters for the binaries and single stars from the observed population. The scattering outcomes are diverse, including ejection, capture/exchange and collision. The binaries are more effective than single stars by a factor of several or more in causing the planet's ejection and collision. Hence, in a cluster, as long as the binary fraction is larger than about 10 per cent, the binaries will dominate the scatterings in terms of these two outcomes. For an open cluster of a stellar density 50 pc, a lifetime 100 Myr and a binary fraction 0.5, we estimate that of the order of 1 per cent of the Jupiters are ejected, 0.1 per cent collide with a star, 0.1 per cent change ownership and 10 per cent of the Sun-Jupiter pairs acquire a stellar companion during scatterings. These companions are typically 1000s of au distant and in half of the cases (so 5 per cent of all Sun-Jupiter pairs), they can excite the planet's orbit through Kozai--Lidov mechanism before stripped by later encounters. Our result suggests that the Solar System may have once had a companion in its birth cluster.
to appear in MNRAS, 9 figures
References in corpus (10)
- The fraction of binary systems in the core of thirteen low-density Galactic globular clusters
- Close encounters in young stellar clusters: implications for planetary systems in the solar neighbourhood
- Stability of Multiplanetary Systems in Star Clusters
- Cross Sections for Planetary Systems Interacting with Passing Stars and Binaries
- New prospects for observing and cataloguing exoplanets in well detached binaries
- The instability of planetary systems in binaries: how the Kozai mechanism leads to strong planet-planet interactions
- The inclination of the planetary system relative to the solar equator may be explained by the presence of Planet 9
- Fly-by encounters between two planetary systems I: solar system analogues
- The Structural Evolution of Forming and Early Stage Star Clusters
- Photometric binaries in fifty Globular Clusters
Cited by in corpus (3)
- A Possible Alignment Between the Orbits of Planetary Systems and their Visual Binary Companions
- The Impact of Stellar Clustering on the Observed Multiplicity of Super-Earth systems: Outside-in Cascade of Orbital Misalignments Initiated by Stellar Flybys
- The Great Planetary Heist: Theft and capture in star-forming regions