Lunar primitive mantle olivine returned by Chang’e-6

S Si-Zhang Sheng S Shui-Jiong Wang Q Qiu-Li Li S Shitou Wu H Hao Wang (Division of Quantitative Sciences, Department of Oncology Johns Hopkins University School of Medicine Baltimore Maryland USA) J Jun-Xiang Hua Z Zhenyu Chen J Jin-Hua Hao B Bo Zhang Y Yongsheng He J Jian-Ming Zhu

Abstract

Abstract The lunar mantle is important for unraveling the Moon’s formation and early differentiation processes. Here, we identify primitive lunar olivines in soils returned by the Chang’e-6 mission. These olivines have oxygen isotopic compositions plotting along the terrestrial fractionation line, and are characterized by high forsterite contents up to 95.6, and a broad range of nickel abundances from zero to 682 ppm. While the low-nickel (zero to 251 ppm), forsteritic olivines align with a Mg-suite origin, the most primitive, high-nickel olivines (337 to 682 ppm) have a different origin. They could be either the first olivine crystallized from the Lunar Magma Ocean (LMO) with an Earth-like initial composition, or crystallized from a hitherto unrecognized ultra-magnesian lava produced by extensive melting of the early LMO cumulate. The exposure of these mantle olivines was facilitated by their entrainment in ascending high-Mg lavas and conveyed to the surface at the South Pole-Aitken Basin.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 23, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

S

Si-Zhang Sheng

S

Shui-Jiong Wang

Q

Qiu-Li Li

S

Shitou Wu

H

Hao Wang

Division of Quantitative Sciences, Department of Oncology Johns Hopkins University School of Medicine Baltimore Maryland USA

J

Jun-Xiang Hua

Z

Zhenyu Chen

J

Jin-Hua Hao

B

Bo Zhang

Y

Yongsheng He

J

Jian-Ming Zhu