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Laser beam propagation experiments along and across a jet engine plume

机译:激光束传播实验以及跨越喷气发动机羽流

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Airplane based laser systems for DIRCM, active imaging and communication are important applications attracting considerable interest. The performance of these systems in directions where the laser beam points close to or through the exhaust plume from the jet engines may be severely reduced. A trial to study these phenomena using a downscaled jet-engine test rig was carried out. The results on propagation of laser beams along and across the plume from these trials are presented. For laser beams propagation along the engine axis an OPO based source producing co-propagating laser beams at 1.52 and 3.56 (mu)m was used. The beams were projected on a screen and imaged with separate IR cameras to study beam wander and spot degradation. Propagation across the plume was studied with a 532 nm laser projected on a screen and imaged by a high speed camera. The engine thrust and the distance between the engine nozzle and the laser beams were varied to study the effects of changing conditions. Scaling to full size engines and performance implications for DIRCM is discussed.
机译:基于飞机的DIRCM激光系统,主动成像和通信是吸引相当兴趣的重要应用。这些系统在来自喷射发动机的靠近或通过排气羽流的激光束点的方向上的性能可能被严重降低。进行了使用较次电流式喷气发动机试验台研究这些现象的试验。提出了激光束沿着这些试验的激光束传播的结果。对于激光束沿发动机轴传播,使用基于OPO的源,其产生在1.52和3.56(MU)M处产生共传播激光束。将光束投射在屏幕上并与单独的IR相机成像,以研究光束漂移和斑点劣化。使用屏幕上投射的532 nm激光器进行羽流穿过羽流并通过高速相机成像。改变发动机推力和发动机喷嘴和激光束之间的距离以研究变化条件的影响。讨论了缩放到全尺寸引擎和针对DIRCM的性能影响。

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