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Structure functions in turbulence for incidence with arbitrary-field distribution

机译:湍流中具有任意场分布的湍流中的结构函数

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摘要

In a turbulent atmosphere, the log-amplitude, phase-correlation, and structure functions are formulated for light sources exhibiting arbitrary-field distribution. This is done by extending the formulations of the correlation and structure functions for the known general-type beam sources to cover any type of source having arbitrary-field distribution. To introduce the arbitrary field, the source is presented by an incidence that is a function of transverse source coordinates. The received field in the random medium is found by employing the Rytov method, which is a single-scattering solution obtained by the first-order approximation; thus our results are valid in weak turbulence. All the existing results can be correctly reproduced from our formulations when the corresponding source-field distributions are inserted into our presented correlation and structure-function expressions. Our results for the arbitrary-source field profiles can be utilized in finding the scintillation index and the angle-of-arrival fluctuations of any type of incidence in optical atmospheric links. Additionally, our formulations can find applications in reflection from rough surfaces and imaging in turbulence.
机译:在动荡的气氛中,对显示任意场分布的光源制定了对数幅度,相位相关和结构函数。这可以通过扩展已知的通用型光束源的相关和结构函数的公式来覆盖具有任意场分布的任何类型的源来完成。为了引入任意场,源由入射角表示,该入射角是横向源坐标的函数。随机介质中的接收场通过采用Rytov方法找到,该方法是通过一阶逼近获得的单散射解。因此我们的结果在弱湍流中是有效的。当将相应的源场分布插入我们提供的相关性和结构函数表达式时,可以从我们的公式正确地复制所有现有结果。我们对任意源场剖面的结果可用于寻找光学大气链路中任何入射类型的闪烁指数和到达角波动。此外,我们的配方还可用于粗糙表面的反射和湍流成像。

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