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In situ analysis of surface composition and meteorology at the Zhurong landing site on Mars TEXT SIZE: A A A

The Zhurong rover finds in situ evidence for both Amazonian saline water activities and present-day water vapor cycling in the Martian northern lowlands.

The Zhurong rover of the Tianwen-1 mission landed in southern Utopia Planitia, providing a unique window into the evolutionary history of the Martian lowlands. During its first 110 sols, Zhurong investigated and categorized surface targets into igneous rocks, lithified duricrusts, cemented duricrusts, soils and sands. The lithified duricrusts, analysed by using laser-induced breakdown spectroscopy onboard Zhurong, show elevated water contents and distinct compositions from those of igneous rocks. The cemented duricrusts are likely formed via water vapor-frost cycling at the atmosphere-soil interface, as supported by the local meteorological conditions. Soils and sands contain elevated magnesium and water, attributed to both hydrated magnesium salts and adsorbed water. The compositional and meteorological evidence indicates potential Amazonian brine activities and present-day water vapor cycling at the soil-atmosphere interface. Searching for further clues to water-related activities and determining the water source by Zhurong are critical to constrain the volatile evolution history at the landing site.

Publication name

 National Science Review, DOI 10.1093/nsr/nwad056, Early Access MAR 2023

Author(s)

 Zhao, Yu-Yan Sara; Yu, Jin; Wei, Guangfei; Pan, Lu; Liu, Xiangfeng; Lin, Yangting; Liu, Yang; Sun, Chen; Wang, Xiyu; Wang, Juntao; Xu, Weijie; Rao, Yunfei; Xu, Weiming; Sun, Tianyang; Chen, Fengye; Zhang, Beiyi; Lin, Honglei; Zhang, Zhenqiang; Hu, Sen; Li, Xiang-Yu; Yu, Xiao-Wen; Qu, Shuai-Yi; Zhou, Di-Sheng; Wu, Xing; Zeng, Xiaojia; Li, Xiongyao; Tang, Hong; Liu, Jianzhong

Corresponding author(s) 

 Zhao, Yu-Yan Sara
 zhaoyuyan@cdut.edu.cn
 Chengdu Univ Technol, Coll Earth Sci, Res Ctr Planetary Sci, Chengdu 610059, Peoples R China
 Zhao, Yu-Yan Sara; Liu, Jianzhong
 zhaoyuyan@cdut.edu.cn; liujianzhong@vip.gyig.ac.cn
 -Chinese Acad Sci, Inst Geochem, Ctr Lunar & Planetary Sci, Guiyang 550081, Peoples R China
 -Chinese Acad Sci, Ctr Excellence Comparat Planetol, Hefei 230026, Peoples R China
 Yu, Jin
 jin.yu@sjtu.edu.cn
 Shanghai Jiao Tong Univ, Sch Phys & Astron, Shanghai 200240, Peoples R China
 Xu, Weiming
 xuwm@mail.sitp.ac.cn
 Chinese Acad Sci, Shanghai Inst Tech Phys, Key Lab Space Act Optoelect Technol, Shanghai 200083, Peoples R China

Author(s) from IGCAS   Zhao, Yu-Yan Sara; Liu, Jianzhong; Wang, Xiyu; Wang, Juntao; Li, Xiang-Yu; Yu, Xiao-Wen; Qu, Shuai-Yi; Zhou, Di-Sheng; Zeng, Xiaojia; Li, Xiongyao; Tang, Hong

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