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Bistatic LIDAR experiment proposed for the shuttle/tethered satellite system missions

机译:建议用于航天飞机/系留卫星系统任务的双基地激光雷达实验

摘要

A new experiment concept has been proposed for the shuttle/tethered satellite system missions, which can provide high resolution, global density mappings of certain ionospheric species. The technique utilizes bistatic LIDAR to take advantage of the unique dual platform configuration offered by these missions. A tuned, shuttle-based laser is used to excite a column of the atmosphere adjacent to the tethered satellite, while triangulating photometic detectors on the satellite are employed to measure the fluorescence from sections of the column. The fluorescent intensity at the detectors is increased about six decades over both ground-based and monostatic shuttle-based LIDAR sounding of the same region. In addition, the orbital motion of the Shuttle provides for quasi-global mapping unattainable with ground-based observations. Since this technique provides such vastly improved resolution on a synoptic scale, many important middle atmospheric studies, heretofore untenable, may soon be addressed.
机译:已经提出了用于航天飞机/系留卫星系统任务的新实验概念,它可以提供某些电离层物种的高分辨率全球密度测绘。该技术利用双基地激光雷达来利用这些任务提供的独特双平台配置。使用基于航天飞机的调谐激光器激发与束缚卫星相邻的一列大气,同时使用卫星上的三角测量光检测器来测量来自该列截面的荧光。在同一区域的地面和单基地航天飞机的激光雷达探测中,探测器的荧光强度增加了大约六十年。此外,航天飞机的轨道运动提供了基于地面的观测所无法获得的准全球制图。由于该技术在天气尺度上提供了如此大的改进,因此许多重要的中层大气研究迄今难以成立,不久将得到解决。

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