search
icy moons
Trends
- 1New findings point to possible life on Saturn's moon Enceladus●Promising discoveries about the potential for life on one of Saturn’s icy moons
Researchers at Freie Universität Berlin, including planetary scientist Frank Postberg, have announced new discoveries about the potential for life on Enceladus, one of Saturn's icy moons, based on data from NASA's Cassini mission. The findings, published as a science release by the university, add to growing evidence that the moon's subsurface ocean could host microbial life, drawing wide attention in the science community.
- 2Saturn's moon Enceladus may ease the search for alien life▼Saturn’s icy moon Enceladus may make alien life easier to find than scientists thought
A new report suggests Enceladus, Saturn's icy moon, may make it easier than previously believed for scientists to detect signs of alien life. The moon is known for the plumes of water vapour erupting from its subsurface ocean, which space probes have already sampled. The claim is that biosignatures could be found more readily in that material than researchers assumed.
- 3Earth microbes survive simulated Enceladus ocean conditions●Earth microbes survive simulated conditions of Saturn moon's ocean
A new study found that Earth microbes can survive conditions simulating the ocean of Enceladus, Saturn's icy moon. Researchers exposed microorganisms to the moon's known conditions, including its salty, alkaline water, and found they persisted. The finding suggests life could plausibly exist in the subsurface ocean beneath Enceladus's ice shell, strengthening the case for future missions to sample plumes that erupt from the moon's south pole.
- 4Icy moons may keep underground oceans even after being smashed apart▼Icy moons may hold on to their underground oceans even after being smashed apart
New research suggests icy moons can retain their subsurface oceans even after catastrophic impacts that break the moon apart. The finding implies that oceans on bodies like Europa or Enceladus could survive violent events, expanding the range of conditions under which habitable environments might persist in the outer solar system.