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Modeling the propagation of Laguerre-Gaussian modes through a random medium based on the analytical Karhunen-Loeve expansion

机译:基于解析的Karhunen-Loeve展开模拟Laguerre-Gaussian模通过随机介质的传播

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To analyze the ability of certain beams to maintain information stability under the influence of random fluctuations of the optical medium, numerical calculations are used with the help of turbulence simulators such as diffusers, scattering screens and turbulence cells. These turbulence simulators can be generated via the Karhunen-Loeve decomposition, which is the basis of the eigenfunctions of the correlation function. A random medium simulator formed for a Gaussian correlation function was used to study the ability of single-ring Laguerre-Gaussian vortex beams to retain their structure. The results showed that an increase in the order of the optical vortex leads to less beams phase singularity stability to random optical fluctuations.
机译:为了分析某些光束在光学介质的随机波动影响下保持信息稳定性的能力,在湍流模拟器(例如扩散器,散射屏和湍流单元)的帮助下使用了数值计算。这些湍流模拟器可以通过Karhunen-Loeve分解生成,这是相关函数的本征函数的基础。使用为高斯相关函数形成的随机介质模拟器来研究单环Laguerre-Gaussian涡旋光束保持其结构的能力。结果表明,光学旋涡的阶数增加导致光束相位奇异性稳定性降低,从而导致随机光学波动。

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