Ahead of NASA’s mission, James Webb telescope finds cues of a liquid water ocean under Europa’s surface

Written by Nagendra Tech

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Jupiter’s icy moon Europa has been one of the most promising places in our solar system to find environments suitable for life beyond Earth. In the 1960s, ground-based telescopic observations noted that Europa’s surface was mostly made of water ice, with scientists speculating that the almost Earth-sized moon has a saltwater ocean that holds twice as much water as our planet.

Now, new observations from the James Webb Telescope (JWST) are revealing that Europa, which was often pictured as a still, silent shell actually has an active surface. In a series of experiments conducted by Southwest Research Institute, it was found that Europa’s surface ice is crystallising at different rates in different places. This suggests that the planet is currently undergoing geologic activity, with scientists labelling the ongoing cycle between the subsurface and surface as “chaos terrains”.

The study focused on two regions located in Europa’s southern hemisphere – Tar Regio and Powys Regio, with the latter often referred to as one of the most intriguing areas on the moon’s surface. In these locations, the James Webb Telescope found crystallised ice both on the surface and below it.

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The experiments were crucial for scientists to understand how the ice transforms between different states. The result of these experiments, when combined with the newly received data from the James Webb Telescope, hints that Europa’s subsurface may be hiding a huge liquid ocean beneath the surface.

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Scientists also found some clues that Europa may have Carbon Dioxide (CO2) and hydrogen peroxide. Upon further evaluation, it was found that CO2 on Europa’s surface is unstable due to the moon’s radioactive environment, which suggests that these geological processes were recent.

Ujjwal Raut, a program manager at the Southwest Research Institute and the co-author of the study, said that the “data showed strong indications that what we are seeing must be sourced from the interior, perhaps from a subsurface ocean nearly 20 miles (30 kilometers) beneath Europa’s thick icy shell. The evidence for a liquid ocean underneath Europa’s icy shell is mounting, which makes this so exciting as we continue to learn more.”

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In October last year, NASA launched Europa Clipper, a spacecraft that will explore Europa to determine if its underground ocean is habitable.  However, the spacecraft will first head towards Mars and take around five and a half years to reach Jupiter’s icy moon.

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