Geological Context of the SLIM Landing Site

Yichen Wang, Zhiyong Xiao, Pei Ma, Hanxing Ouyang, Wei Cao

Journal of Earth Science ›› 2024, Vol. 35 ›› Issue (2) : 708-711.

Journal of Earth Science ›› 2024, Vol. 35 ›› Issue (2) : 708-711. DOI: 10.1007/s12583-024-1986-8
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Geological Context of the SLIM Landing Site

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Yichen Wang, Zhiyong Xiao, Pei Ma, Hanxing Ouyang, Wei Cao. Geological Context of the SLIM Landing Site. Journal of Earth Science, 2024, 35(2): 708‒711 https://doi.org/10.1007/s12583-024-1986-8

References

Chen Y, Hu S, Li J H, . Chang’ E-5 Lunar Samples Shed New Light on the Moon. The Innovation Geoscience, 2023, 1 1 100014
CrossRef Google scholar
Huang J, Xiao Z Y, Xiao L, . Diverse Rock Types Detected in the Lunar South Pole–Aitken Basin by the Chang’ E-4 Lunar Mission. Geology, 2020, 48(7): 723-727.
CrossRef Google scholar
Ji J Z, Guo D J, Liu J Z, . The 1: 2 500 000-Scale Geologic Map of the Global Moon. Science Bulletin, 2022, 67(15): 1544-1548.
CrossRef Google scholar
Johnson B C, Blair D M, Collins G S, . Formation of the Orientale Lunar Multiring Basin. Science, 2016, 354(6311): 441-444.
CrossRef Google scholar
Kring D A, Kramer G Y, Collins G S, . Peak-Ring Structure and Kinematics from a Multi-Disciplinary Study of the Schrödinger Impact Basin. Nature Communications, 2016, 7 13161
CrossRef Google scholar
McGetchin T R, Settle M, Head J W. Radial Thickness Variation in Impact Crater Ejecta: Implications for Lunar Basin Deposits. Earth and Planetary Science Letters, 1973, 20(2): 226-236.
CrossRef Google scholar
Melosh H J. Impact Cratering. A Geological Process, 1989, New York: Oxford University Press
Melosh H J, Kendall J, Horgan B, . South Pole-Aitken Basin Ejecta Reveal the Moon’s Upper Mantle. Geology, 2017, 45(12): 1063-1066.
CrossRef Google scholar
Meyer H M, Denevi B W, Robinson M S, . The Global Distribution of Lunar Light Plains from the Lunar Reconnaissance Orbiter Camera. Journal of Geophysical Research: Planets, 2020, 125(1): 1-25.
Miljković K, Lemelin M, Lucey P G. Depth of Origin of the Peak (Inner) Ring in Lunar Impact Basins. Geophysical Research Letters, 2017, 44(20): 140-146.
CrossRef Google scholar
Morgan J V, Gulick S P S, Bralower T, . The Formation of Peak Rings in Large Impact Craters. Science, 2016, 354(6314): 878-882.
CrossRef Google scholar
Nakauchi, Y., Saiki, K., Ohtake, M., 2019. Multi-Band Camera on SLIM to Investigate Mg# of Lunar Mantle Materials. 50th Lunar and Planetary Science Conference, March 18–22, 2019. Texas
Neish C D, Madden J, Carter L M, . Global Distribution of Lunar Impact Melt Flows. Icarus, 2014, 239: 105-117.
CrossRef Google scholar
Ohtake, M., Saiki, K., Nakauchi, Y., et al., 2019. Geology of the Crater Theophilus on the Moon: Landing Site of the Smart Lander for Investigating the Moon. 0th Lunar and Planetary Science Conference, #2342
Osinski G R, Tornabene L L, Grieve R A F. Impact Ejecta Emplacement on Terrestrial Planets. Earth and Planetary Science Letters, 2011, 310(3/4): 167-181.
CrossRef Google scholar
Pike R J. Ejecta from Large Craters on the Moon: Comments on the Geometric Model of McGetchin et al. Earth and Planetary Science Letters, 1974, 23(3): 265-271.
CrossRef Google scholar
Smith, M., Spudis, P., 2013. Geological Map of the Nectaris Basin and Its Deposits. 44th Lunar and Planetary Science Conference, March 18–22, 2013, Texas
Stöffler D, Ryder G. Stratigraphy and Isotope Ages of Lunar Geologic Units: Chronological Standard for the Inner Solar System. Space Space Science Reviews, 2001, 96: 9-54.
CrossRef Google scholar
Xiao Z Y, Ding C Y, Xie M G, . Ejecta from the Orientale Basin at the Chang’ e-4 Landing Site. Geophysical Research Letters, 2021, 48 3 e90935
CrossRef Google scholar
Yamamoto S, Nakamura R, Matsunaga T, . Possible Mantle Origin of Olivine around Lunar Impact Basins Detected by SELENE. Nature Geoscience, 2010, 3: 533-536.
CrossRef Google scholar
Yamamoto S, Ohtake M, Karouji Y, . Global Distribution and Geological Context of Co-Existing Occurrences of Olivine-Rich and Plagioclase-Rich Materials on the Lunar Surface. Journal of Geophysical Research (Planets), 2022, 127 2 e07077.

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