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Scintillation index of optical plane wave propagating through non-Kolmogorov moderate-strong turbulence

机译:通过非Kolmogorov中等强度湍流传播光学平面波的闪烁指数

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An optical plane wave propagating through atmospheric turbulence is affected by irradiance fluctuations known as scintillation. The scintillation index of an optical wave in strong turbulence can be analyzed by extended Rytov theory, which uses filter functions to eliminate the effect of cell turbulence sizes that do not contribute to scintillation, and it already has been calculated by Kolmogorov's power spectral density model. However several experiments showed that Kolmogorov theory is sometimes incomplete to describe atmospheric turbulence properly. In this paper, for a horizontal path, we use extended Rytov theory to carry out plane wave scintillation index analysis in non Kolmogorov strong turbulence. We do it using a non Kolmogorov power spectrum which uses a generalized exponent factor and a generalized amplitude factor. Although our final expressions for the scintillation have been obtained by extended Rytov theory, which is necessary to adopt in strong turbulence conditions, they reduce to the proper results also in weak turbulence.
机译:通过大气湍流传播的光学平面波受诸如闪烁的辐照度波动的影响。通过扩展的Rytov理论可以分析强湍流中的光波的闪烁指数,其使用过滤器函数来消除对不贡献闪烁的细胞湍流尺寸的效果,并且已经通过Kolmogorov的功率谱密度模型来计算。然而,几个实验表明,Kolmogorov理论有时不完整地描述大气湍流。在本文中,对于水平路径,我们使用扩展的Rytov理论在非Kolmogorov强大的湍流中进行平面波闪烁指数分析。我们使用非Kolmogorov功率谱进行,该功率谱使用广义指数因子和广义幅度因子。虽然我们通过扩展Rytov理论获得了对闪烁的最终表达,但是在强大的湍流条件下采用必要的是,它们也在弱湍流中降低了适当的结果。

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