火星探测计划
线性能量转移
火星探测
航天器
天体生物学
物理
等效剂量
辐射
火星登陆
环境科学
过境(卫星)
宇宙射线对健康的威胁
粒子辐射
航空航天工程
天文
工程类
带电粒子
核物理学
太阳风
日冕物质抛射
等离子体
量子力学
离子
运输工程
公共交通
作者
C. Zeitlin,Donald M. Hassler,Francis A. Cucinotta,Bent Ehresmann,R. F. Wimmer‐Schweingruber,D. E. Brinza,S. B. Kang,Gerald Weigle,S. Böttcher,E. Böhm,Söenke Burmeister,Jingnan Guo,Jan Köhler,César Martı́n,A. Posner,S. C. Rafkin,G. Reitz
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2013-05-30
卷期号:340 (6136): 1080-1084
被引量:544
标识
DOI:10.1126/science.1235989
摘要
Going to Mars The Mars Science Laboratory spacecraft containing the Curiosity rover, was launched from Earth in November 2011 and arrived at Gale crater on Mars in August 2012. Zeitlin et al. (p. 1080 ) report measurements of the energetic particle radiation environment inside the spacecraft during its cruise to Mars, confirming the hazard likely to be posed by this radiation to astronauts on a future potential trip to Mars. Williams et al. (p. 1068 , see the Perspective by Jerolmack ) report the detection of sedimentary conglomerates (pebbles mixed with sand and turned to rock) at Gale crater. The rounding of the rocks suggests abrasion of the pebbles as they were transported by flowing water several kilometers or more from their source.
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