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首页> 外文期刊>Journal of geophysical research. Planets >A whole new Mercury: MESSENGER reveals a dynamic planet at the last frontier of the inner solar system
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A whole new Mercury: MESSENGER reveals a dynamic planet at the last frontier of the inner solar system

机译:全新的水星:Messenger在内部太阳系的最后一个边界揭示了一个动态的星球

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摘要

The MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) mission yielded a wealth of information about the innermost planet. For the first time, visible images of the entire planet, absolute altimetry measurements and a global gravity field, measurements of Mercury’s surface composition, magnetic field, exosphere, and magnetosphere taken over more than four Earth years are available. From these data, two overarching themes emerge. First, multiple data sets and modeling efforts point toward a dynamic ancient history. Signatures of graphite in the crust suggest solidification of an early magma ocean, image data show extensive volcanism and tectonic features indicative of subsequent global contraction, and low-altitude measurements of magnetic fields reveal an ancient magnetic field. Second, the present-day Mercury environment is far from quiescent. Convective motions in the outer core support a modern magnetic field whose strength and geometry are unique among planets with global magnetic fields. Furthermore, periodic and aperiodic variations in the magnetosphere and exosphere have been observed, some of which couple to the surface and the planet’s deep interior. Finally, signatures of geologically recent volatile activity at the surface have been detected. Mercury’s early history and its present-day environment have common elements with the other inner solar system bodies. However, in each case there are also crucial differences and these likely hold the key to further understanding of Mercury and terrestrial planet evolution. MESSENGER’s exploration of Mercury has enabled a new view of the innermost planet, and more importantly has set the stage for much-needed future exploration.
机译:水星表面,空间环境,地球化学和范围(Messenger)任务提供了有关最内向星球的大量信息。首次可以看到整个行星的可见图像,绝对的高度测量和全球重力场,汞表面组成,磁场,外层和磁层的测量值超过四年。从这些数据中,出现了两个总体主题。首先,多个数据集和建模工作指向动态的古代历史。地壳中石墨的签名表明凝固早期的岩浆海洋,图像数据显示出广泛的火山和构造特征,指示后来的全球收缩,并且磁场的低空测量结果揭示了古老的磁场。其次,当今的汞环境远非静止。外芯中的对流运动支持一个现代磁场,其强度和几何形状在具有全球磁场的行星之间是独特的。此外,已经观察到磁层和外层的周期性和周期性变化,其中一些夫妇陷入了表面以及行星的深内部。最后,已经检测到表面上地质挥发性活性的特征。水星的早期历史及其当今的环境与其他内部太阳系身体具有共同的元素。但是,在每种情况下,也存在至关重要的差异,这些差异可能是进一步了解汞和陆地行星进化的关键。 Messenger对Mercury的探索使人们对最内向的星球有了新的看法,更重要的是为急需的未来探索奠定了基础。

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