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How Jupiter cultivated more large moons than Saturn

Researchers found that Jupiter's strong magnetic field created a cavity in its circumplanetary disk, which captured the largest four moons, including Ganymede. In contrast, Saturn's weaker magnetic field failed to form a cavity, resulting in only one large moon, Titan. This discovery provides insight into the formation of satellite sys...

SourceKyoto University·JournalNature Astronomy·TypeComputational simulation/modeling·DateApr 6, 2026

Cassini proves complex chemistry in Enceladus ocean

Scientists have found new complex organic molecules spewing from Saturn's moon Enceladus, confirming that complex chemical reactions are taking place within its underground ocean. The discovery strengthens the case for a dedicated European Space Agency (ESA) mission to orbit and land on Enceladus.

SourceEuropean Space Agency·JournalNature Astronomy·TypeObservational study·DateOct 1, 2025

Ravit Helled awarded Farinella Prize 2024

Ravit Helled received the 2024 Paolo Farinella Prize for her work on planetary interiors, proposing a dilute core structure that was later confirmed by mission data. Her research also explores giant planet formation and evolution, with international contributions to NASA and ESA missions.

Giant planets cast a deadly pall

New studies show that giant gas planets in nearby star systems can prevent life on smaller, rocky planet neighbors by kicking them out of orbit and wreaking havoc on their climates. Researchers found that four giant planets in the HD 141399 system are likely to destroy the chances for life on Earth-like planets.

SourceUniversity of California - Riverside·JournalThe Astronomical Journal·DateOct 31, 2023

Hubble finds Saturn's rings heating its atmosphere

Astronomers have found that Saturn's vast ring system is heating the giant planet's upper atmosphere, a phenomenon that could provide insights into the atmospheres of distant worlds. The discovery was made using archival ultraviolet-light observations from four space missions, including Hubble and Cassini.

SourceNASA/Goddard Space Flight Center·JournalThe Planetary Science Journal·TypeObservational study·DateMar 30, 2023

UCLA-led study explains how one of Saturn’s moons ejects particles from oceans beneath its surface

A new UCLA-led study explains that tidal heating in Enceladus' rocky core creates currents that transport silica particles to the surface. The research suggests that these flows can pick up materials from the seafloor and bring them to the ice shell, providing evidence for hydrothermal activity at the ocean floor.

SourceUniversity of California - Los Angeles·JournalCommunications Earth & Environment·DateFeb 23, 2023

SwRI investigations reveal more evidence that Mimas is a stealth ocean world

Numerical simulations suggest that Mimas' Herschel impact basin is compatible with a thinning ice shell and geologically young ocean. The results imply that the present-day ocean within Mimas must have been warming and expanding since its formation, potentially making it an emerging ocean world.

SourceSouthwest Research Institute·JournalGeophysical Research Letters·TypeComputational simulation/modeling·DateJan 31, 2023

SwRI scientist helps identify new evidence for habitability in Enceladus’s ocean

Scientists have discovered new evidence of phosphorus availability in Enceladus's ocean, making it a prime target in the search for extraterrestrial life. The discovery suggests that Enceladus's subsurface ocean is likely habitable due to its high levels of dissolved phosphorus.

SourceSouthwest Research Institute·JournalProceedings of the National Academy of Sciences·TypeComputational simulation/modeling·DateSep 19, 2022

Why Jupiter doesn’t have rings like Saturn

New research by UC Riverside astrophysicist Stephen Kane suggests that Jupiter's four main moons would quickly destroy any large ring formations. This prevents Jupiter from having substantial rings, unlike Saturn. The study provides evidence of catastrophic events in the past through the analysis of ring compositions and shapes.

SourceUniversity of California - Riverside·JournalPlanetary Science·TypeComputational simulation/modeling·DateJul 21, 2022

SwRI researcher shows how elliptical craters could shed light on age of Saturn’s moons

A SwRI study examines elliptical craters on Saturn's moons Tethys and Dione, finding unique patterns that indicate the satellites' age and formation conditions. The research suggests a planetocentric impactor population, pointing to the importance of considering gravity-driven impacts when studying object ages.

SourceSouthwest Research Institute·JournalEarth and Planetary Science Letters·TypeObservational study·DateJun 21, 2022

Saturn’s high-altitude winds generate an extraordinary aurorae, study finds

Researchers at the University of Leicester have discovered a new mechanism driving Saturn's massive aurorae, which are fueled by swirling winds in its upper atmosphere. This discovery answers one of NASA's Cassini mission mysteries and highlights the complex interactions between atmospheric weather and aurora creation.

SourceUniversity of Leicester·JournalGeophysical Research Letters·TypeObservational study·DateFeb 7, 2022

Dragonfly mission to Titan announces big science goals

The Dragonfly mission will investigate Titan's surface and atmosphere, searching for chemical biosignatures and exploring the moon's active methane cycle. By analyzing the prebiotic chemistry currently taking place in Titan's atmosphere and on its surface, scientists hope to gain insights into the potential for life on the moon.

SourceCornell University·JournalThe Planetary Science Journal·DateAug 10, 2021

Saturn's tilt caused by its moons

Recent research by CNRS scientists suggests Saturn's current tilt is due to the migration of its largest moon Titan and other satellites, causing it to interact with Neptune's orbit, leading to gradual tilting. The planet's axis could more than double in inclination over the next few billion years.

SourceCNRS·JournalNature Astronomy·DateJan 20, 2021

Where were Jupiter and Saturn born?

A team of scientists, led by Matt Clement, used simulations to study the formation of Jupiter and Saturn. The findings suggest that these two planets were originally closer together than previously thought, with a ratio of two Jupiter orbits to one Saturnian orbit being more consistent with the current configuration.

Interplanetary storm chasing

Researchers Jeremy Bloxham and Rakesh K. Yadav use a 3D simulation model to understand the formation of Saturn's massive hexagon storm, which has remained relatively unchanged for nearly 40 years. The study suggests that deep thermal convection plays a key role in creating the unique shape and persistence of the storm.

What makes Saturn's atmosphere so hot

New analysis of data from NASA's Cassini spacecraft reveals that auroral electric currents are likely responsible for heating Saturn's upper atmosphere. The study provides the most complete mapping yet of temperature and density in a gas giant's upper atmosphere, shedding light on how heat circulates in the region.

SourceUniversity of Arizona·JournalNature Astronomy·DateApr 6, 2020

Final images from Cassini spacecraft

Researchers analyze Cassini data to study Saturn's ultraviolet auroras and their dynamic processes. The new observations provide unique views of the small-scale structures behind these auroras, revealing similarities with Jupiter's magnetosphere.

SourceLancaster University·JournalGeophysical Research Letters·DateJan 14, 2020

How Enceladus got its stripes

The study investigates the physical forces acting on Enceladus that allow the tiger stripe fissures to form and remain in place. The researchers found that the fissures could have formed on either pole, but the south pole's unique deformation led to their formation.

SourceCarnegie Institution for Science·JournalNature Astronomy·DateDec 9, 2019

Saturn's moon Mimas, a snowplough in the planet's rings

Researchers found that Mimas' migration into the Cassini Division pushed apart ice particles, creating the 4500 km wide band. The moon's orbit may have been driven by orbital resonance with Saturn, causing it to lose energy and migrate inwards.

SourceCNRS·JournalMonthly Notices of the Royal Astronomical Society·DateJun 11, 2019

Deep learning takes Saturn by storm

Researchers from UCL and University of Arizona developed a 'deep learning' approach called PlanetNet to detect storms on Saturn. The algorithm accurately maps the components and features in turbulent regions, revealing previously undetected atmospheric features such as ammonia ice clouds.

SourceUniversity College London·JournalNature Astronomy·DateApr 29, 2019

New surprises from Jupiter and Saturn

The latest data from Juno and Cassini spacecraft has challenged existing theories on planetary formation and behavior, revealing new insights into Jupiter and Saturn's magnetic fields and atmospheres. Surprisingly, the atmosphere is evenly mixed, contradicting conventional predictions.