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Risk mitigation in Spaceborne Lasers

机译:减轻星载激光器的风险

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Spaceborne lidars carry much promise for Earth observation and interplanetary missions to measure atmospheric parameters (wind velocity, optical extinction or species concentrations) and planet topologies. As the first European lidar mission, the European Space Agency is developing a Doppler wind lidar, ALADIN, to be launched on board ADM-Aeolus in 2008. ALADIN is a pulsed laser, emitting about 120 mJ of pulse energy in the UV. The mission duration is envisaged to be three years, which corresponds to several billion emitted pulses, thus imposing very stringent criteria on the longevity of the system. Laser-induced damage is one of the most significant issues here, in particular since laser-induced damage in space vacuum is still poorly understood. The European Space Agency has therefore established a test campaign to measure the power handling of all the instrument optics with laboratories in Germany, Italy, the Netherlands, the United Kingdom and France participating. Measurements are conducted at three wavelengths (1064nm, 532nm and 355nm) and with the introduction of several contaminants. The presentation covers laser-induced damage risk mitigation, the ESA test campaign and some test results.
机译:星载激光雷达为地球观测和行星际飞行任务提供了广阔的前景,这些任务可以测量大气参数(风速,光学消光或物种浓度)和行星拓扑。作为首次的欧洲激光雷达任务,欧洲航天局正在开发多普勒风激光雷达ALADIN,该激光雷达将于2008年在ADM-Aeolus板上发射。ALADIN是脉冲激光,在紫外线中发射约120 mJ的脉冲能量。预计任务持续时间为三年,相当于数十亿个发射脉冲,因此对系统的寿命提出了非常严格的标准。激光引起的损坏是这里最重要的问题之一,特别是因为对太空真空中激光引起的损坏仍然知之甚少。因此,欧洲航天局在德国,意大利,荷兰,英国和法国的实验室中开展了一项测试活动,以测量所有仪器光学器件的功率处理能力。在三种波长(1064nm,532nm和355nm)下进行测量,并引入多种污染物。演讲内容涵盖了减轻激光引起的损坏风险,ESA测试活动以及一些测试结果。

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