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Irradiance scintillation on laser beam propagation in the near ground turbulent atmosphere

机译:辐照闪烁对近地面湍流大气中激光束的传播

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Optical scintillation degrades beam quality as laser beams propagation in the atmosphere and increases rates of code-error for high-data-rate laser communication in the atmosphere. The scintillated irradiance depends on integrals of atmospheric turbulence strength along the propagation path. For the shorter path-length and weaker atmospheric turbulence, the integral is smaller, and the Rytov weak fluctuation theory can solve the problem successfully. However, for longer path-length and/or stronger atmospheric turbulence strength, multiple scattering events must occur and result in saturation of irradiance scintillation. The irradiance scintillation of laser beams propagation in the near ground turbulent atmosphere is investigated for the case of plane wave and spherical wave at various typical atmospheric turbulence strengths and inner scale of atmospheric turbulence. The dependence of irradiance scintillation on turbulence strength, path-length, and inner scale is presented for the plane wave case and spherical wave case. The results on plane wave case and spherical wave case are compared.
机译:随着激光束在大气中的传播,光学闪烁会降低光束质量,并增加大气中高数据速率激光通信的代码错误率。闪烁辐照度取决于沿传播路径的大气湍流强度的积分。对于较短的路径长度和较弱的大气湍流,积分较小,Rytov弱波动理论可以成功解决该问题。但是,对于更长的路径长度和/或更强的大气湍流强度,必须发生多次散射事件并导致辐照闪烁饱和。对于平面波和球面波在各种典型大气湍流强度和大气湍流内部尺度下的情况,研究了在近地湍流环境中传播的激光束的辐照闪烁。对于平面波情况和球面情况,提出了辐照闪烁对湍流强度,光程长度和内标度的依赖性。比较了平面波和球形波的结果。

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