Chang’e-6 samples reveal deeper solar wind on Moon’s far side

China’s Chang’e-6 mission returned lunar soil that shows solar wind particles reached greater depths on the Moon’s far side than on the near side. The difference stems from Earth’s magnetosphere, which slows incoming particles that strike the near side.

Researchers from the Institute of Geology and Geophysics at the Chinese Academy of Sciences analyzed 1.935 grams of regolith collected from the South Pole-Aitken Basin. They measured noble gases including neon, krypton, and xenon and found clear isotopic and depth differences compared with earlier near-side samples.

The Chang’e-6 material showed a neon isotope ratio of 20Ne/22Ne at 11.34 ± 0.22. This value indicates stronger fractionation caused by higher-energy particles. Stepwise heating experiments released xenon mainly at high temperatures, confirming deeper implantation on the far side.

Earth’s magnetosphere creates the contrast. When the Moon passes through the magnetosheath, solar wind speed drops from roughly 400 km/s to 200 km/s. This slower flow affects only the near side, which faces Earth. The far side remains exposed to the undisturbed wind.

The team estimates that about 25 percent of the solar wind recorded at the Chang’e-5 near-side site arrived at reduced speed. No similar effect appears in the Chang’e-6 data. The findings were published in Nature Geoscience.

Labaran da ke da alaƙa

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.

An Ruwaito ta hanyar AI

New research indicates that Earth's upper atmosphere may generate more electrical current during solar storms than scientists previously believed. The findings come from a study by NASA and Lancaster University researchers. They challenge long-held assumptions about limits on space weather effects.

New data from the XRISM mission indicate that winds from supermassive black holes can expel gas from giant galaxies and limit future star formation.

An Ruwaito ta hanyar AI

A team of astronomers in Japan has discovered evidence of a faint atmosphere surrounding the small trans-Neptunian object 2002 XV93. Previously, only Pluto was known to retain an atmosphere among bodies beyond Neptune due to its stronger gravity. The finding, made via a rare stellar occultation on January 10, 2024 and published in Nature Astronomy, indicates a short-lived atmosphere requiring continuous replenishment.

Wannan shafin yana amfani da cookies

Muna amfani da cookies don nazari don inganta shafin mu. Karanta manufar sirri mu don ƙarin bayani.
Ƙi