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Soft and stretchy or rock solid? New modeling study sheds light on how the Earth got its moon

Researchers used state-of-the-art computational techniques to reveal fundamental differences in moon formation from a Mars-sized object and Earth 4.5 billion years ago. Material strength of the two ancestral bodies matters in the process, changing how researchers think the planetary collision happened.

SourceUniversity of Arizona·JournalThe Astrophysical Journal Letters·TypeComputational simulation/modeling·DateSep 8, 2026

SwRI-led modeling identifies new scenarios for Moon formation

Researchers have discovered that material strength and temperature can significantly impact the formation of the Moon. The study suggests that a Mars-sized object collided with Earth, but the simulations previously ignored material strength, which is now found to matter. The results imply a potential connection between the Moon's compo...

SourceSouthwest Research Institute·JournalThe Astrophysical Journal Letters·TypeComputational simulation/modeling·DateSep 1, 2026

Lunar soil reads as a cosmic time capsule for exploding stars

A new study reveals that the Moon's soil can be decoded to reveal history of supernova explosions. Researchers developed a mathematical model to unscramble the lunar surface, providing guidance for future core samples. The model reveals insights into the history of our Solar System's journey through the galaxy.

SourceUniversity of Hawaii at Manoa·JournalPhysical Review Letters·TypeComputational simulation/modeling·DateAug 24, 2026

Can Earthly microbes survive on the moon? Scientists say yes (in the shade)

A new study published in Science Advances found that bacteria and fungi from Earth can survive for at least a week in shaded nooks and crannies around the lunar south pole. The study's findings highlight the need to better understand microbial persistence in extreme lunar environments, which is crucial for future space missions.

SourceUniversity of Maryland·JournalScience Advances·TypeComputational simulation/modeling·DateAug 20, 2026

Scientists use moonquakes to locate lunar ice

Researchers developed a method to detect water ice on the moon using seismic waves, which can travel faster through frozen soil. This discovery is critical for NASA's Artemis program, which aims to send crewed landings to the moon's south polar region in 2028.

SourceUniversity of Maryland·JournalScience Advances·TypeData/statistical analysis·DateJul 31, 2026

SwRI team uncovers clues about what future astronauts may find on the Moon

Researchers studied the South Pole-Aitken (SPA) basin on the Moon's far side, a massive impact structure that may have excavated material from deep inside the lunar mantle. Advanced models and simulations recreated the SPA-forming impact, identifying new evidence about the direction and composition of the object that struck the Moon.

SourceSouthwest Research Institute·JournalScience Advances·TypeComputational simulation/modeling·DateJun 15, 2026

Imaging the Moon’s interior with fiber-optics

Using Distributed Acoustic Sensing technology, scientists deployed fibre-optic cables across the lunar surface to detect seismic waves generated by moonquakes, meteorites, and landings. The cables can record signals at a higher spatial resolution than traditional seismic networks.

SourceETH Zurich·JournalEarth and Space Science·TypeComputational simulation/modeling·DateMar 24, 2026

Using moon dirt to build future lunar colonies

Researchers at Ohio State University have developed a new laser 3D printing method that can create extremely durable structures using simulated lunar dirt. The study found that the material's properties depend on the surface onto which it is printed, and that environmental factors such as oxygen levels and temperature affect its stabil...

SourceOhio State University·JournalActa Astronautica·DateFeb 27, 2026

Chang'e-6 samples reveal how giant asteroid impact affected lunar interior

The study analyzed Chang'e-6 samples from the South Pole-Aitken Basin, finding significantly heavier potassium isotopic compositions than previous lunar basalts. This suggests that a giant impact event had a profound influence on the Moon's deep interior, affecting its thermal history and geochemical properties.

SourceChinese Academy of Sciences Headquarters·JournalProceedings of the National Academy of Sciences·DateJan 12, 2026

Lunar soil analyses reveal how space weathering shapes the Moon’s ultraviolet reflectance

A recent study analyzed Apollo-era samples to understand how space weathering affects lunar surface materials and their far-ultraviolet reflectance. The research provided valuable insights into the evolution of the lunar surface, enabling better interpretation of remote sensing data from lunar missions.

SourceSouthwest Research Institute·JournalJournal of Geophysical Research Planets·TypeImaging analysis·DateDec 10, 2025

Researchers discover latitude- and regolith-dependent distribution of lunar surface water

A research team from the Chinese Academy of Sciences found that lunar surface water has a global source in the solar wind, with its distribution mainly controlled by latitude and regolith maturity. The study used samples from China's Chang'e-6 mission and NASA's Apollo missions to analyze the abundance and origin of lunar surface water.

SourceChinese Academy of Sciences Headquarters·JournalNature Geoscience·DateNov 6, 2025

University of Maryland geophysicist helps identify moonquake dangers that could threaten future missions

Researchers found that ground acceleration from moonquakes can shift lunar landscapes and threaten stability of future missions. The study assesses damage risk using new models of quakes and finds a one in 20 million chance of a potentially damaging moonquake occurring near an active fault.

SourceUniversity of Maryland·JournalScience Advances·TypeComputational simulation/modeling·DateJul 30, 2025

Lunar soil could support life on the Moon

Scientists have developed a technology that can extract water from lunar soil and convert carbon dioxide into oxygen, fuel, and chemicals for human exploration. This innovation has the potential to mitigate the need for transporting essential resources like water and fuel from Earth.

SourceCell Press·JournalJoule·TypeExperimental study·DateJul 16, 2025

Lunar Policy Platform (LPP), Committee on Space Research (COSPAR), and International Astronomical Union (IAU) sign MoU on Lunar Science & Ethics

The LPP, COSPAR, and IAU have signed a Memorandum of Understanding (MoU) to collaborate on lunar science and ethics. The partnership aims to develop principles and practices for balanced approaches to lunar activities, with a focus on promoting international cooperation and science-informed space policies.

Halogens reveal the secrets of the lunar crust

Researchers have discovered that rocks from the Earth-facing side of the Moon contain a surprisingly high amount of chlorine, suggesting volcanic eruptions may be responsible for its distribution. This finding provides new clues about the Moon's origin and evolution, including the formation and chemical changes of its crust.

SourceUniversity of Münster·JournalNature Communications·TypeExperimental study·DateJun 24, 2025

Innovative approaches advance search for ice on the moon

Scientists have developed two new methods to detect water ice on the lunar surface, with one approach analyzing images from a specialized camera and another detecting buried ice deposits through cosmic rays. The research aims to support future lunar bases and provide resources for humans or be broken down to hydrogen and oxygen.

SourceUniversity of Hawaii at Manoa·JournalGeophysical Research Letters·TypeComputational simulation/modeling·DateApr 22, 2025

The Moon: a chunk ejected from Earth?

Researchers from Göttingen University and Max Planck Institute for Solar System Research discovered the Moon formed from material ejected from the Earth's mantle. The findings support the idea that water reached Earth early in its development, contrary to the prevailing assumption of late impacts.

SourceUniversity of Göttingen·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJan 16, 2025

SwRI models Pluto-Charon formation scenario that mimics Earth-Moon system

Researchers at Southwest Research Institute propose a new model for the formation of Pluto and Charon, suggesting they may have originated from a giant collision similar to the Earth-Moon system. The scenario supports Pluto's active geology and possible subsurface ocean, with implications for the Kuiper Belt.

SourceSouthwest Research Institute·JournalNature Geoscience·TypeComputational simulation/modeling·DateJan 7, 2025

Old moon with a young crust

A recent study resolves contradictions in the Moon's age and composition. Researchers found that the Moon's crust was melted twice, with the second heating event resetting its geological clock and altering the age of lunar rocks. This discovery sheds light on the Moon's turbulent history and volcanic past.

SourceMax Planck Institute for Solar System Research·JournalNature·TypeComputational simulation/modeling·DateDec 18, 2024