A 2-year locomotive exploration and scientific investigation of the lunar farside by the Yutu-2 rover

风化土 撞击坑 地质学 天体生物学 喷出物 月球陨石坑 地形 导线 大地测量学 地理 地图学 量子力学 物理 超新星
作者
Liang Ding,Ruyi Zhou,Ye Yuan,Huaiguang Yang,J. Li,Tianyi Yu,Chuankai Liu,J. Wang,Shu Li,Haibo Gao,Zongquan Deng,Nan Li,Z. Wang,Zhaopei Gong,Guangjun Liu,Jianfeng Xie,Senmiao Wang,Z. Rong,Daipeng Deng,X. Wang
出处
期刊:Science robotics [American Association for the Advancement of Science]
卷期号:7 (62): eabj6660-eabj6660 被引量:95
标识
DOI:10.1126/scirobotics.abj6660
摘要

The lunar nearside has been investigated by many uncrewed and crewed missions, but the farside of the Moon remains poorly known. Lunar farside exploration is challenging because maneuvering rovers with efficient locomotion in harsh extraterrestrial environment is necessary to explore geological characteristics of scientific interest. Chang’E-4 mission successfully targeted the Moon’s farside and deployed a teleoperated rover (Yutu-2) to explore inside the Von Kármán crater, conveying rich information regarding regolith, craters, and rocks. Here, we report mobile exploration on the lunar farside with Yutu-2 over the initial 2 years. During its journey, Yutu-2 has experienced varying degrees of mild slip and skid, indicating that the terrain is relatively flat at large scales but scattered with local gentle slopes. Cloddy soil sticking on its wheels implies a greater cohesion of the lunar soil than encountered at other lunar landing sites. Further identification results indicate that the regolith resembles dry sand and sandy loam on Earth in bearing properties, demonstrating greater bearing strength than that identified during the Apollo missions. In sharp contrast to the sparsity of rocks along the traverse route, small fresh craters with unilateral moldable ejecta are abundant, and some of them contain high-reflectance materials at the bottom, suggestive of secondary impact events. These findings hint at notable differences in the surface geology between the lunar farside and nearside. Experience gained with Yutu-2 improves the understanding of the farside of the Moon, which, in return, may lead to locomotion with improved efficiency and larger range.
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