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Phase fluctuations in vortex beams

机译:涡流束中的相位波动

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摘要

Phase fluctuations of vortex beams are examined using the random phase screen setup. By taking Gaussian, Bessel Gaussian and Laguerre Gaussian vortex beams, with the main focus being on Gaussian vortex beam, we investigate the phase fluctuations in a region around on-axis. These phase fluctuations are quantified in terms of phase variance and phase structure function. Variations of phase fluctuations against some of the source parameters, propagation distance and receiver plane radial position are plotted. Our analysis shows that the studied vortex beams have more phase fluctuations on and around the on-axis region in comparison to Gaussian beam. This is reflected into the phase variance of the vortex beams starting approximately aroundn followed by a fall. Similar trend applies to the phase structure function which exhibits a rapid increase just past the on-axis point. These observations change however at longer propagation distances where strong turbulence characteristics prevail. Here we observe saturation regimes, whereby all phase variances and structure functions settle around n and 2n respectively.
机译:使用随机相位屏幕设置检查涡流波束的相位波动。通过拍摄高斯,贝塞尔高斯和Laguerre高斯涡流束,主要重点在高斯涡流束上,我们研究了在轴上的区域中的相位波动。这些相波动在相差和相结构功能方面进行量化。绘制了对一些源参数,传播距离和接收器平面径向位置的相位波动的变化。我们的分析表明,与高斯光束相比,所研究的涡流束在轴上区域上具有更多的相位波动。这被反射到从大约发生的涡流波束的相差,然后落后。类似的趋势适用于相位结构函数,其缺少刚刚沿着轴点的快速增加。然而,这些观察结果在更长的传播距离处变化,其中强烈的湍流特性占上风。在这里,我们观察饱和性制度,其中所有相差和结构功能分别围绕N和2N饱和。

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