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Analysis of beam wander effects for a horizontal-path propagating Gaussian-beam wave: focused beam case

机译:水平路径传播高斯光束波的光束漂移效应分析:聚焦光束情况

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摘要

Failure of the first-order Rytov approximation to properly predict the scintillation index of a large-aperture focused beam, or an uplink collimated (or focused) beam, has been discussed in several recent publications, which cite beam wander effects as the main reason for this failure. We use computer simulations to examine several aspects of beam wander phenomena on a propagating convergent beam in the weak-fluctuation regime over a horizontal path at high altitude for which the refractive index structure parameter is on the order of C=1.39×10−16 m−2/3. Simulation results are presented at various ranges up to 10 km for (1) the beam wander centroid displacement, (2) the kurtosis excess of the irradiance profile, (3) the irradiance profile, (4) the mean-square hot spot displacement from the boresight and from the centroid, and (5) the scintillation index at the optical axis of the beam. In addition, simulation results are compared with theoretical models.
机译:在最近的几篇出版物中已经讨论了一阶Rytov逼近未能正确预测大孔径聚焦光束或上行链路准直(或聚焦)光束的闪烁指数的情况,其中列举了光束漂移效应是产生这种现象的主要原因。这个失败。我们使用计算机模拟来研究高海拔水平路径上弱波动状态下的会聚光束在高海拔水平路径上的光束漂移现象的几个方面,其折射率结构参数约为C = 1.39×10-16 m -2/3。针对(1)光束漂移质心位移,(2)辐照度分布的峰度过剩,(3)辐照度分布,(4)均方根热点位移,在长达10 km的各种范围内给出了仿真结果(5)在光束光轴上的闪烁指数。另外,将仿真结果与理论模型进行了比较。

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