McClintock William E, Bradley E Todd, Vervack Ronald J, Killen Rosemary M, Sprague Ann L, Izenberg Noam R, Solomon Sean C
Laboratory for Atmospheric and Space Physics, University of Colorado, Boulder, CO 80303, USA.
Science. 2008 Jul 4;321(5885):92-4. doi: 10.1126/science.1159467.
During MESSENGER's first Mercury flyby, the Mercury Atmospheric and Surface Composition Spectrometer measured Mercury's exospheric emissions, including those from the antisunward sodium tail, calcium and sodium close to the planet, and hydrogen at high altitudes on the dayside. Spatial variations indicate that multiple source and loss processes generate and maintain the exosphere. Energetic processes connected to the solar wind and magnetospheric interaction with the planet likely played an important role in determining the distributions of exospheric species during the flyby.
在信使号首次飞越水星期间,水星大气与表面成分光谱仪测量了水星的外层大气排放,包括背阳面钠尾、靠近行星的钙和钠以及昼侧高海拔处氢的排放。空间变化表明,多种源和损失过程产生并维持了外层大气。与太阳风以及磁层与行星相互作用相关的高能过程,在飞越期间确定外层大气物种分布方面可能起到了重要作用。