Solomon Sean C, McNutt Ralph L, Watters Thomas R, Lawrence David J, Feldman William C, Head James W, Krimigis Stamatios M, Murchie Scott L, Phillips Roger J, Slavin James A, Zuber Maria T
Department of Terrestrial Magnetism, Carnegie Institution of Washington, Washington, DC 20015, USA.
Science. 2008 Jul 4;321(5885):59-62. doi: 10.1126/science.1159706.
In January 2008, the MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) spacecraft became the first probe to fly past the planet Mercury in 33 years. The encounter revealed that Mercury is a dynamic system; its liquid iron-rich outer core is coupled through a dominantly dipolar magnetic field to the surface, exosphere, and magnetosphere, all of which interact with the solar wind. MESSENGER images confirm that lobate scarps are the dominant tectonic landform and record global contraction associated with cooling of the planet. The history of contraction can be related to the history of volcanism and cratering, and the total contractional strain is at least one-third greater than inferred from Mariner 10 images. On the basis of measurements of thermal neutrons made during the flyby, the average abundance of iron in Mercury's surface material is less than 6% by weight.
2008年1月,水星表面、空间环境、地球化学与测距(MESSENGER)航天器成为33年来首个飞越水星的探测器。这次交会揭示出水星是一个动态系统;其富含液态铁的外核通过一个主要为偶极的磁场与表面、外层大气和磁层相耦合,所有这些都与太阳风相互作用。MESSENGER拍摄的图像证实,叶状悬崖是主要的构造地貌,并记录了与行星冷却相关的全球收缩。收缩历史可以与火山活动和撞击坑形成历史联系起来,并且总收缩应变比从水手10号图像推断出的至少大三分之一。根据飞越期间对热中子的测量,水星表面物质中铁的平均丰度按重量计小于6%。