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Adaptive optics for laser space debris removal

机译:自适应光学器件,用于清除激光空间碎片

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Space debris in low Earth orbit below 1500km is becoming an increasing threat to satellites and spacecrafts.Radar and laser tracking are currently used to monitor the orbits of thousands of space debris and active satellitesare able to use this information to manoeuvre out of the way of a predicted collision. However, many satellitesare not able to manoeuvre and debris-on debris collisions are becoming a signicant contributor to the growingspace debris population. The removal of the space debris from orbit is the preferred and more definitive solution. Space debris removal may be achieved through laser ablation, whereby a high power laser corrected with an adaptive optics system could, in theory, allow ablation of the debris surface and so impart a remote thrust on the targeted object. The goal of this is to avoid collisions between space debris to prevent an exponential increase in the number of space debris objects. We are developing an experiment to demonstrate the feasibility of laser ablation for space debris removal. This laser ablation demonstrator utilises a pulsed sodium laser to probe the atmosphere ahead of the space debris and the sun reflection of the space debris is used to provide atmospheric tip{tilt information. A deformable mirror is then shaped to correct an infrared laser beam on the uplink path to the debris. We present here the design and the expected performance of the system.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:低于1500公里的低地球轨道上的空间碎片日益成为对卫星和航天器的威胁。雷达和激光跟踪目前被用来监视数以千计的空间碎片的轨道,活跃的卫星能够利用这些信息来进行机动。预测的碰撞。但是,许多卫星无法操纵,碎片碰撞碎片正成为不断增长的空间碎片人口的重要因素。从轨道上清除空间碎片是更可取的首选方案。可以通过激光烧蚀去除空间碎片,从而在理论上用自适应光学系统校正的高功率激光可以烧蚀碎片表面,从而在目标物体上施加远距离推力。其目的是避免空间碎片之间的碰撞,以防止空间碎片对象的数量呈指数增加。我们正在开发一项实验,以证明激光烧蚀去除空间碎片的可行性。该激光烧蚀演示器利用脉冲钠激光来探测空间碎片之前的大气,并且空间碎片的太阳反射用于提供大气倾斜信息。然后,将可变形镜成形,以校正通向碎片的上行链路路径上的红外激光束。我们在此介绍系统的设计和预期性能。©(2012)版权所有,美国光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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