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Analysis of flat-topped Gaussian vortex beam scintillation properties in atmospheric turbulence

机译:平顶高斯涡旋光束在大气湍流中的闪烁特性分析

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摘要

We analyze the scintillation properties of a flat-topped Gaussian vortex beam propagating in a weakly turbulent atmosphere. We utilize a random phase screen model to perform this analysis. We evaluate the scintillation against the changes of topological charge, beam order, operating wavelength, receiver aperture side length, and source size parameters. The results show that using a flat-topped Gaussian vortex beam with a high topological charge causes a reduction in scintillation. Increasing the receiver aperture side length reduces scintillation level. As the source size increases, scintillation decreases. Our results also indicate that a flat-topped Gaussian vortex beam with high topological charges has less scintillation than the fundamental Gaussian beam. We believe that our findings will be useful in improving the performance of next-generation optical communication links and networks.
机译:我们分析了在弱湍流中传播的平顶高斯涡旋光束的闪烁特性。我们利用随机相位筛选模型来执行此分析。我们根据拓扑电荷,光束顺序,工作波长,接收器孔径边长和光源尺寸参数的变化评估闪烁。结果表明,使用具有高拓扑电荷的平顶高斯涡旋光束会减少闪烁。增大接收器孔径边的长度会降低闪烁级别。随着源尺寸的增加,闪烁会降低。我们的结果还表明,具有高拓扑电荷的平顶高斯涡旋光束的闪烁比基本高斯光束的闪烁少。我们相信我们的发现将有助于提高下一代光通信链路和网络的性能。

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