Study reveals boiling oceans beneath icy moons' surfaces

New research indicates that hidden oceans on icy moons around outer planets may boil due to tidal heating, explaining unusual surface features. The study, published in Nature Astronomy, focuses on smaller moons like Enceladus, Mimas, and Miranda. Lead author Max Rudolph from UC Davis highlights the processes shaping these worlds over millions of years.

Icy moons orbiting the outer planets of the solar system are encased in thick shells of ice, with some harboring vast subsurface oceans of liquid water. These environments are of interest to scientists because liquid water is key to life as known on Earth. A recent study in Nature Astronomy examines the dynamic processes beneath these frozen surfaces, proposing that tidal forces can lead to boiling in hidden oceans.

Tidal heating occurs as these moons orbit massive planets, with gravitational interactions from neighboring moons causing fluctuations in heat levels. When heating increases, the ice shell melts from below and thins; when it decreases, the shell thickens through refreezing. In prior research, the team found that thickening ice raises pressure, contributing to features like the "tiger stripes" fractures on Saturn's moon Enceladus.

This new work explores the reverse: thinning ice reduces internal pressure, potentially causing the underlying ocean to boil. On smaller moons such as Enceladus, Mimas of Saturn, and Miranda of Uranus, the pressure drop can reach the triple point, where ice, liquid water, and vapor coexist. For Miranda, this process may account for its enormous ridges and steep cliffs called coronae, as observed by the Voyager 2 spacecraft.

Mimas, less than 250 miles wide and known for its massive crater earning it the "Death Star" nickname, shows a subtle wobble suggesting a hidden ocean despite its inactive appearance. In contrast, larger moons like Titania experience ice cracking before boiling conditions arise, leading to cycles of thinning and thickening.

"Not all of these satellites are known to have oceans, but we know that some do," said Max Rudolph, associate professor of earth and planetary sciences at the University of California, Davis and lead author. "We're interested in the processes that shape their evolution over millions of years and this allows us to think about what the surface expression of an ocean world would be."

Coauthors include Michael Manga from UC Berkeley, Alyssa Rhoden from Southwest Research Institute in Boulder, and Matthew Walker from Planetary Science Institute in Tucson. The research was supported in part by NASA.

ተያያዥ ጽሁፎች

New research indicates that salty, nutrient-rich ice on Europa could sink through the moon's icy shell to feed its hidden ocean, potentially supporting life. Geophysicists at Washington State University used computer simulations to show this process, inspired by Earth's crustal delamination. The findings address a key habitability challenge for the Jupiter moon.

በAI የተዘገበ

An international team of scientists has modeled how complex organic molecules, essential for biology, could have been incorporated into Jupiter's largest moons during their formation. The research suggests these building blocks of life were delivered from the early solar system's gas and dust disk without significant chemical alteration. The findings appear in two recent scientific papers.

A new study reveals that a volcano south of Pavonis Mons on Mars formed through multiple eruptive phases powered by an evolving magma system, challenging earlier assumptions of a single eruption. Researchers used orbital imaging and mineral data to trace the volcano's development. The findings indicate Mars's interior was more active than previously thought.

በAI የተዘገበ

A team led by Professor Lisa Kaltenegger at Cornell University has pinpointed 45 rocky exoplanets in the habitable zones of their stars, where liquid water might exist. The research, drawing on data from ESA's Gaia mission and NASA's Exoplanet Archive, highlights prime targets for the search for extraterrestrial life. Published in Monthly Notices of the Royal Astronomical Society, the study also notes 24 additional candidates in a stricter habitable zone.

A new NASA study indicates that traces of ancient life on Mars could survive for over 50 million years in pure ice, protected from cosmic radiation. Researchers recommend future missions focus on drilling into clean ice deposits rather than rocks or soil. The findings, based on lab simulations, highlight pure ice as a potential preserve for organic material.

በAI የተዘገበ

Astronomers have discovered that aging stars expanding into red giants are engulfing close-orbiting giant planets. A study of nearly half a million stars shows fewer such planets around more evolved red giants, suggesting many have been destroyed. The findings come from data collected by NASA's Transiting Exoplanet Survey Satellite.

ይህ ድረ-ገጽ ኩኪዎችን ይጠቀማል

የእኛን ጣቢያ ለማሻሻል ለትንታኔ ኩኪዎችን እንጠቀማለን። የእኛን የሚስጥር ፖሊሲ አንብቡ የሚስጥር ፖሊሲ ለተጨማሪ መረጃ።
ውድቅ አድርግ