Study links ancient asteroid breakup to Solar System bombardment

A new study proposes that the breakup of a large asteroid about 800 million years ago sent debris across the inner Solar System, striking Earth, the Moon and Mars. The research, led by the Southwest Research Institute, connects the event to a surge in lunar craters and possible environmental shifts on Earth.

The findings center on the Eulalia asteroid family. Researchers used models to show that fragments from the parent body's collision entered a gravitational resonance with Jupiter, scattering material inward.

Dr. William Bottke, lead author, noted that evidence on the Moon helps reconstruct what occurred on Earth. He said the heavily cratered lunar surface records large impacts that are harder to trace on our planet due to geological processes.

The timing overlaps with a period of global cooling and biological changes. The study suggests impacts may have contributed but does not prove causation.

Simulations indicate Earth received far more strikes than the Moon. Similar effects on Mars could have included seismic activity and volcanic surges.

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New computer simulations indicate that a massive ancient collision created the Moon's South Pole-Aitken Basin and scattered deep mantle material across areas eyed for future Artemis landings.

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A meteorite found in the Sahara Desert has provided the first direct evidence of a massive protoplanet that orbited the young Sun more than 4.5 billion years ago. The object, comparable in size to the Moon, was destroyed in a collision, leaving fragments that reached Earth. Researchers say the discovery reveals a previously unknown path in early planet formation.

Japanese researchers announced the discovery of asteroid traces in Hokkaido. This is the first confirmation of such traces in Japan. The findings may relate to the extinction of dinosaurs in the Cretaceous period.

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