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Uranus and Neptune might be rock giants

A new study by the University of Zurich suggests that Uranus and Neptune may be more rocky than icy, challenging their classification as ice giants. The researchers developed a unique simulation process to model the planets' interiors, which found that the two planets could have either water-rich or rock-rich compositions.

UCF scientists use James Webb Space Telescope to better understand solar system’s origins

Researchers analyzed Trans-Neptunian Objects using the James Webb Space Telescope, finding two distinct groups with varying surface ice methanol presence. The discovery sheds light on the formation and evolution of these distant icy worlds, revealing insights into the solar system's origins and potentially habitable exoplanets.

SourceUniversity of Central Florida·JournalThe Astrophysical Journal Letters·DateApr 23, 2025

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

Exotic water ice contributes to understanding of magnetic anomalies on Neptune and Uranus

Researchers used density functional theory to investigate the mechanical properties of superionic ice XVIII, which is thought to make up a large part of Neptune and Uranus. The study found that dislocations in the crystal lattice produce shear, leading to macroscopic deformations and potentially influencing the planets' magnetic fields.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalProceedings of the National Academy of Sciences·DateJan 20, 2023

Making nanodiamonds out of bottle plastic

Researchers at Helmholtz-Zentrum Dresden-Rossendorf have successfully created nanodiamonds out of PET plastic using powerful laser flashes. This breakthrough method opens up new possibilities for producing these minuscule diamonds, which are needed for highly-sensitive quantum sensors and medical contrast agents.

SourceHelmholtz-Zentrum Dresden-Rossendorf·JournalScience Advances·TypeExperimental study·DateSep 2, 2022

Gemini north telescope helps explain why Uranus and Neptune are different colors

The Gemini North telescope has helped astronomers understand why Uranus and Neptune have different colors. Excess haze on Uranus builds up in its stagnant atmosphere, making it appear lighter than Neptune's. The team developed a single atmospheric model that matches observations of both planets.

SourceAssociation of Universities for Research in Astronomy (AURA)·JournalJournal of Geophysical Research Planets·TypeObservational study·DateMay 31, 2022

Neptune is cooler than we thought: Study reveals unexpected changes in atmospheric temperatures

A new study by University of Leicester researchers reveals Neptune's atmospheric temperatures have dropped by roughly 8 degrees Celsius between 2003 and 2018, with unexpected stratospheric warming at the south pole. The cause of these changes is currently unknown, but may be related to seasonal variations in atmospheric chemistry.

SourceUniversity of Leicester·JournalPlanetary Science·TypeObservational study·DateApr 11, 2022

Evidence of superionic ice provides new insights into the unusual magnetic fields of Uranus and Neptune

Researchers have created superionic ice phases XVIII and XX by subjecting water to record-breaking pressures and temperatures. The study provides insights into the formation of these conductive forms of ice and their potential role in explaining the mysterious magnetic fields of Uranus and Neptune.

SourceGFZ GeoForschungsZentrum Potsdam, Helmholtz Centre·JournalNature Physics·TypeExperimental study·DateOct 14, 2021

Hubble captures birth of giant storm on Neptune

A team of planetary scientists used Hubble images to track the growth of a new Great Dark Spot on Neptune, finding that dark spots originate deeper in the planet's atmosphere than previously thought. The study also revealed that these storms occur with a frequency of every four to six years and last up to six years.

SourceAmerican Geophysical Union·JournalGeophysical Research Letters·DateMar 25, 2019

In Neptune, it's raining diamonds

Scientists at Helmholtz-Zentrum Dresden-Rossendorf simulated the conditions inside Neptune and found diamonds forming in real time using an ultra-strong X-ray laser. The study provides insights into the planet's chemical makeup and has potential applications for electronic instruments, medical procedures, and industrial production.

SourceHelmholtz-Zentrum Dresden-Rossendorf·JournalNature Astronomy·DateAug 21, 2017

Planet Nine could spell doom for solar system

Research from the University of Warwick suggests that Planet Nine's existence could lead to the elimination of a giant planet and its ejection into interstellar space. The hypothetical planet's presence could cause a 'pinball' effect, hurling planets out of the solar system as the sun dies in around seven billion years.

SourceUniversity of Warwick·JournalMonthly Notices of the Royal Astronomical Society·DateAug 30, 2016

Clocking Neptune's spin

A University of Arizona planetary scientist has determined Neptune's rotation with high accuracy by tracking atmospheric features in its atmosphere. The discovery improves upon previous measurements and provides a better understanding of the planet's fundamental properties.

SourceUniversity of Arizona·JournalIcarus·DateJun 29, 2011