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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Effects of atmospheric turbulence on the orbital angular momentum of multi-Gaussian Schell model beams
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Effects of atmospheric turbulence on the orbital angular momentum of multi-Gaussian Schell model beams

机译:大气湍流对多高斯谢尔模型光束轨道角动量的影响

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摘要

The effects of multibeams and partially coherent source on the orbital angular momentum transmission of multi-Gaussian Schell model beams in an atmospheric turbulence channel are analyzed. An effective crosstalk probability model of the orbital angular momentum is derived which leads to crosstalk probability function for eigenmodes of different orbital angular momentum states and beamlets. The work shows that the evolution of the effective spatial coherence radius with growing the rms width of the correlation of the partially coherent source and the number of the beamlet in multi-Gaussian model beams. The crosstalk probability of the orbital angular momentum of an effective Gaussian-Schell model beam decreases as increasing of the degree of the spatial coherence of the partially coherent source and the beamlet number of the multi-Gaussian Schell model beams.
机译:分析了多光束和部分相干源对大气湍流通道中多高斯谢尔模型光束轨道角动量传输的影响。推导了有效的轨道角动量串扰概率模型,该模型导致了不同轨道角动量状态和子束本征模的串扰概率函数。研究表明,在多高斯模型光束中,有效空间相干半径随着部分相干源和子束数相关性的均方根宽度的增大而演化。有效高斯-谢尔模型光束的轨道角动量的串扰概率随着部分相干源的空间相干程度和多高斯谢尔模型光束的子束数的增加而降低。

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