Survivability of Moon Systems Around Ejected Gas Giants
arXiv:1809.05639 · doi:10.1093/mnras/sty2552
Abstract
We examine the effects that planetary encounters have on the moon systems of ejected gas giant planets. We conduct a suite of numerical simulations of planetary systems containing three Jupiter-mass planets (with the innermost planet at 3 AU) up to the point where a planet is ejected from the system. The ejected planet has an initial system of 100 test-particle moons. We determine the survival probability of moons at different distances from their host planet, measure the final distribution of orbital elements, examine the stability of resonant configurations, and characterize the properties of moons that are stripped from the planets. We find that moons are likely to survive in orbits with semi-major axes out beyond 200 planetary radii (0.1 AU in our case). The orbital inclinations and eccentricities of the surviving moons are broadly distributed and include nearly hyperbolic orbits and retrograde orbits. We find that a large fraction of moons in two-body and three-body mean-motion resonances also survive planetary ejection with the resonance intact. The moon-planet interactions, especially in the presence of mean-motion resonance, can keep the interior of the moons molten for billions of years via tidal flexing, as is seen in the moons of the gas giant planets in the solar system. Given the possibility that life may exist in the subsurface ocean of the Galilean satellite Europa, these results have implications for life on the moons of rogue planets---planets that drift through the galaxy with no host star.
8 pages, 7 figures. Submitted to MNRAS
References in corpus (13)
- Dynamical Outcomes of Planet-Planet Scattering
- No large population of unbound or wide-orbit Jupiter-mass planets
- A Study of the Shortest-Period Planets Found With Kepler
- Geophysical tests for habitability in ice-covered ocean worlds
- Active Cryovolcanism on Europa?
- Orbital Perturbations of the Galilean Satellites During Planetary Encounters
- The Survival Rate of Ejected Terrestrial Planets with Moons
- A new paradigm for reproducing and analyzing N-body simulations of planetary systems
- Innocent Bystanders: Orbital Dynamics of Exomoons during Planet-Planet Scattering
- The Occurrence of Additional Giant Planets Inside the Water-Ice Line in Systems with Hot Jupiters: Evidence Against High-Eccentricity Migration
- Exomoon Habitability and Tidal Evolution in Low-Mass Star Systems
- A population of planetary systems characterized by short-period, Earth-sized planets
- Origin and Stability of Exomoon Atmospheres - Implications for Habitability
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- On the Detection of Exomoons Transiting Isolated Planetary-Mass Objects
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- Presence of liquid water during the evolution of exomoons orbiting ejected free-floating planets
- The formation of transiting circumplanetary debris discs from the disruption of satellite systems during planet-planet scattering
- Detecting Exomoons in Free-Floating-Planet Events from Space-based Microlensing Surveys
- Disk fraction among free-floating planetary-mass objects in Upper Scorpius
- Life in the dark: Potential urability of moons of rogue planets