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Application limitations of a laser guide star in adaptive optoelectronic systems caused by its jitter in the atmosphere

机译:激光导星在大气中的抖动导致的自适应光电系统中的应用局限性

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摘要

Application limitations caused by the jitter of a laser guide star used for the compensation of atmospheric phase distortions are considered for Earth-based adaptive optoelectronic systems for the observation of natural and artificial space objects. The spatial coherence radii (Fried parameter) for which a laser beam remains within the isoplanatic angle under the jitter effect during guide star formation are estimated using locally homogeneous and isotropic atmospheric turbulence models. Beam deflections in two mutually orthogonal directions are considered to be distributed normally, and the probability of the beam remaining within the isoplanatic angle is considered to be subject to the Rayleigh law. The angular divergence of the deflected beam is estimated for a short exposure with a duration less than the atmosphere freezing time for the far and near fields of the emitting laser aperture. (C) 2021 Optica Publishing Group
机译:用于补偿大气相位畸变的激光导星抖动引起的应用限制被考虑用于观测自然和人造空间物体的地球自适应光电系统。利用局部均匀和各向同性的大气湍流模型估计了导星形成过程中激光束在抖动效应下保持在等平面角内的空间相干半径(Fried参数)。两个相互正交方向上的光束偏转被认为是正态分布的,并且光束保持在等平面角内的概率被认为是受瑞利定律的约束。偏转光束的角度发散度是针对短时间曝光估计的,其持续时间小于发射激光孔径远场和近场的大气冻结时间。(C) 2021 Optica 出版集团

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