arXiv Open Access 2023

Fe and Mg Isotope compositions Indicate a Hybrid Mantle Source for Young Chang'E 5 Mare Basalts

Jiang Y. Kang J. T. Liao S. Y. Elardo S. M. Zong K. Q. +6 lainnya
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Abstrak

The Chang'E 5 (CE-5) samples represent the youngest mare basalt ever known and provide an access into the late lunar evolution. Recent studies have revealed that CE-5 basalts are the most evolved lunar basalt, yet controversy remains over the nature of their mantle sources. Here we combine Fe and Mg isotope analyses with a comprehensive study of petrology and mineralogy on two CE-5 basalt clasts. These two clasts have a very low Mg# (~29) and show similar Mg isotope compositions with Apollo low-Ti mare basalts as well as intermediate TiO2 and Fe isotope compositions between low-Ti and high-Ti mare basalts. Fractional crystallization or evaporation during impact cannot produce such geochemical signatures which otherwise indicate a hybrid mantle source that incorporates both early- and late-stage lunar magma ocean (LMO) cumulates. Such a hybrid mantle source would be also compatible with the KREEP-like REE pattern of CE-5 basalts. Overall, our new Fe-Mg isotope data highlight the role of late LMO cumulate for the generation of young lunar volcanism.

Topik & Kata Kunci

Penulis (11)

J

Jiang Y.

K

Kang J. T.

L

Liao S. Y.

E

Elardo S. M.

Z

Zong K. Q.

W

Wang S. J.

N

Nie C.

L

Li P. Y.

Y

Yin Z. J.

H

Huang F.

H

Hsu W. B

Format Sitasi

Y., J., T., K.J., Y., L.S., M., E.S., Q., Z.K., J., W.S. et al. (2023). Fe and Mg Isotope compositions Indicate a Hybrid Mantle Source for Young Chang'E 5 Mare Basalts. https://arxiv.org/abs/2302.10507

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2023
Bahasa
en
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arXiv
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Open Access ✓