What happens to a moon when its planet is stolen?

2026/08/03

Categories: science

What happens to a moon when its planet is stolen?
If a passing star tore Jupiter out of the solar system tomorrow, new simulations say this entire family would go with it. Io, Europa, Ganymede and Callisto all orbit well inside the boundary where a moon's grip fails. Credit: NASA/JPL

We have known for a while that the Milky Way is full of homeless worlds. Rogue planets, free-floating planets—call them what you like—but they are planets formed in orderly systems around ordinary stars and then thrown out, either by a gravitational shove from a sibling planet or by a star that strayed too close. What has been much less clear is what happens to any moons they were carrying at the time. Eviction is a violent business, and you would expect a moon to be the first thing lost.

Yannick Badoux and Simon Portegies Zwart at Leiden Observatory have now run the numbers properly, simulating nearly 34,000 stellar encounters in which a star drifts past a planetary system at every conceivable angle and distance, with the fate of both planet and moon tracked to the end. The research is published on the arXiv preprint server.

Everything turns on a boundary called the Hill radius, which is worth understanding because the whole result follows from it. Around every planet is a region where its own gravity beats the pull of its star, and any moon must live inside it.

Think of it as the length of a leash. Where a moon sits along that leash decides its fate. Out to roughly 40% of the way, moons hold on and leave with their planet. Past that, the grip fails fast, and by halfway it is hopeless: Planet and moon part company mid-ejection and drift off separately.

This is very good news for moons like the ones we know. Io orbits at less than 1% of Jupiter's Hill radius. Run the scenario, and if a passing star tore Jupiter out of the solar system, Io, Europa, Ganymede and Callisto would all still be there when Jupiter left.

There is a subtler finding I like even more. Moons that survive close in emerge with tidy, almost circular orbits, while those that only just cling on come out visibly rattled, stretched and tilted by the encounter. A shove from a rival planet leaves rougher marks still. That means a rogue moon's orbit carries the fingerprints of how the eviction happened, and since nearly 90% of ejections barely change the planet-moon spacing at all, you can work backward from what you see to what it once was.

The team has tried exactly that on a real candidate. A microlensing detection cataloged as MOA-2011-BLG-262L may be a rogue planet with a sub-Earth-mass moon, though the data stubbornly permit other readings. If it is, the team finds it most likely began life around 5.2 astronomical units from its star, which, pleasingly, is precisely where Jupiter sits from the sun.

There is an interesting thought bolted onto this whole discovery. A moon squeezed and flexed by its planet's gravity generates heat from the inside, with no sunlight required. Europa is one such world and has a buried ocean that way. Eject the whole family into interstellar space and the tides keep working. Somewhere out in the dark, a Jupiter may be falling through the galaxy with a warm, wet moon still in tow and, who knows, maybe even aquatic extraterrestrial travelers.

Publication details

Yannick Badoux et al, Planet-moon ejections in close stellar encounters, arXiv (2026). DOI: 10.48550/arxiv.2607.16402

Journal information: arXiv

Who's behind this story?

Sadie Harley

Sadie Harley

BSc Life Sciences & Ecology. Microbiology lab background with pharmaceutical news experience in oil, gas, and renewable industries. Full profile →

Andrew Zinin

Andrew Zinin

Master's in physics with research experience. Long-time science news enthusiast. Plays key role in Science X's editorial success. Full profile →

Citation: What happens to a moon when its planet is stolen? (2026, August 3) retrieved 3 August 2026 from https://phys.org/news/2026-08-moon-planet-stolen.html

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