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Researchers discover potential 100-mile ocean on Uranusโ€™ moon Ariel

Researchers found that Ariel, a moon of Uranus, may have once held a subsurface ocean over 100 miles deep, based on data from NASA's Voyager 2. This discovery is significant because it suggests Arielโ€ฆ

โ€œWe just need to go backโ€ โ€“ Uranusโ€™ moon Ariel may have hidden a 100-mile-deep ocean
ScienceDaily โ€” 24 September 2026
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Scientists analyzing data from NASAโ€™s Voyagerโ€ฏ2 flyby have concluded that Ariel, one of Uranusโ€™s inner moons, may once have harbored a subsurface ocean more than 100โ€ฏmiles (160โ€ฏkm) deep beneath its fractured icy crust. The finding, published this week in *Science Advances*, comes from a team led by planetary geophysicist Drโ€ฏEmilyโ€ฏMiller of the University of Colorado. The researchers combined gravity measurements with computer models of Arielโ€™s interior to infer a thick layer of liquid water that could have existed billions of years ago.

The discovery matters because it adds Ariel to a growing list of icy worlds that may contain hidden oceans, including Europa, Enceladus and even Miranda, another small moon of Uranus. Ocean worlds are prime targets in the search for life beyond Earth, as liquid water is a key ingredient for biology. Arielโ€™s surface shows extensive faulting and ridges that suggest the crust has been pulled apart, a pattern that matches what scientists expect when a deep ocean freezes and expands. The new study builds on earlier hints from Mirandaโ€™s tectonic features and from the detection of ammoniaโ€‘bearing compounds on Uranian moons, which can lower the freezing point of water and make longโ€‘lasting oceans more plausible.

The next step is to gather more detailed observations. NASAโ€™s upcoming Europa Clipper and Dragonfly missions will refine techniques for detecting subsurface oceans, and those methods could be applied to Uranusโ€™s system when a dedicated orbiter finally arrives. Astronomers are also planning to use the James Webb Space Telescope to look for faint signatures of water vapor or heat that might still be leaking from Arielโ€™s interior. If confirmed, Arielโ€™s ancient ocean would broaden the zone where lifeโ€‘friendly environments might exist, prompting a reevaluation of where to look for biosignatures in the outer solar system.

Read Full Story at ScienceDaily โ†’
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