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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Radio occultation measurement of the electron density near the lunar surface using a subsatellite on the SELENE mission
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Radio occultation measurement of the electron density near the lunar surface using a subsatellite on the SELENE mission

机译:无线电掩星电子的测量密度接近月球表面使用子卫星的月之女神的使命

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摘要

The electron density distribution in the vicinity of the lunar surface was explored with the radio occultation technique using a subsatellite on the SELENE mission. Although the measurements suffer from contamination by the terrestrial ionosphere and interplanetary plasma, an analysis of more than 300 measurements provides adequate statistics and reveals a general trend. The result suggests that a dense ionosphere covering the whole sunlit side, as suggested by the radio occultation measurements on the Soviet Luna 19 and 22 missions, does not exist. However, weak signatures of electron density enhancement with densities on the order of 100 cm ~(-3)are observed below 30 km altitude at solar zenith angles less than 60. The statistically averaged density reaches a peak at around 15 km altitude and decreases gradually at higher altitudes and toward the surface. Although the suggested electron layer is thinner and less extended horizontally than that reported by Luna 19 and 22, the existence of such an ionized layer is still difficult to explain by conventional ionosphere generation mechanisms. An alternative source of electrons may be required.
机译:附近的电子密度分布月球表面的探索与收音机掩星技术使用的子卫星月之女神的使命。从地球电离层污染和星际等离子,更多的分析超过300的测量提供了足够的统计和显示一个大趋势。结果表明,电离层覆盖整个阳光的一面,所建议的收音机掩星在苏联Luna 19日测量和22任务,不存在。签名的电子密度的增强密度的100厘米~ (3)观察到低于30公里高度太阳能天顶角小于60。密度达到一个峰值在15公里的高度并在高海拔和逐渐减少到地表。电子层更薄和更少的扩展报告的水平比19和卢娜22日,这种电离层的存在由传统仍然难以解释电离层的生成机制。电子的来源可能是必需的。

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