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Spreading of partially coherent sinh-Gaussian beams in slant atmospheric turbulence

机译:倾斜大气湍流中部分相干的SINH-GASSIAN梁的扩散

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Based on the extended Huygens-Fresnel principle, taking the partially coherent sinh-Gaussian (ShG) beam as a typical example of partially coherent beams, the analytical expressions for the root mean square width and angular spread of partially coherent ShG beams in atmospheric turbulence along a slant path are derived, and used to study the influence of propagation path on the propagation of partially coherent ShG beams in atmospheric turbulence. It is shown that the spreading of partially coherent ShG beams along a horizontal path is larger than that along a slant path in atmospheric propagation. The influence of atmospheric turbulence along a slant path on the partially coherent ShG beams propagation is smaller than that along a horizontal path. Therefore, the slant path is more beneficial to the beam propagation through atmospheric turbulence in comparison with the horizontal propagation. The validity of our results is interpreted physically. Results in this paper may provide potential applications in free-space optical communications.
机译:基于延伸的Huygens - 菲涅耳原理,采用部分相干的Sinh-Gaussian(SHG)梁作为部分相干梁的典型示例,用于大气湍流中部分相干的SHG梁的根均方宽度和角度扩散的分析表达式衍生倾斜路径,并用于研究传播路径对大气湍流中部分相干的SHG梁的传播的影响。结果表明,沿水平路径的部分相干的SHG梁的扩展大于沿大气传播中的倾斜路径。沿着部分相干的SHG光束传播上的倾斜路径的大气湍流的影响小于水平路径的倾斜路径。因此,与水平传播相比,倾斜路径通过大气湍流更有利于光束传播。我们的结果的有效性是物理上的解释。本文的结果可以在自由空间光通信中提供潜在的应用。

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