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Scattering of a partially coherent Gaussian-Schell beam from a diffuse target in slant atmospheric turbulence

机译:倾斜大气湍流中来自散射目标的部分相干高斯-谢尔光束的散射

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摘要

On the basis of the extended Huygens-Fresnel principle, the scattering of partially coherent Gaussian-Schell-model (GSM) beams from a diffuse target in slant double-passage atmospheric turbulence is studied and compared with that of fully coherent Gaussian beams. Using the cross-spectral density function of the GSM beams, we derive the expressions of the mutual coherence function, angle-of-arrival fluctuation, and covariance and variance of the intensity of the scattered field, taking into account the fluctuations of both the log-amplitude and phase. The numerical results are presented, and the influences of the wavelength, propagation distance, and waist radius on scattering properties are discussed. The perturbation region of the normalized intensity variance of the partially coherent GSM beam is smaller than that of the fully coherent Gaussian beam at the middle turbulence level. The normalized intensity variance of long-distance beam propagation is smaller than that of beam propagation along a short distance.
机译:基于扩展的惠更斯-菲涅耳原理,研究了倾斜双通道大气湍流中来自散射目标的部分相干高斯-谢尔模型(GSM)光束的散射,并将其与全相干高斯光束的散射进行了比较。利用GSM光束的跨谱密度函数,我们考虑了两个对数的波动,得出了互相关函数,到达角波动以及散射场强度的协方差和方差的表达式。 -幅度和相位。给出了数值结果,并讨论了波长,传播距离和腰围半径对散射特性的影响。在中间湍流水平上,部分相干的GSM光束的归一化强度方差的扰动区域小于完全相干的高斯光束的扰动区域。长距离光束传播的归一化强度方差小于短距离光束传播的归一化强度方差。

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