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Coherence evolution of partially coherent beams carrying optical vortices propagating in non-Kolmogorov turbulence

机译:在非Kolmogorov湍流中传播的带有光学涡旋的部分相干光束的相干演化

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摘要

Based on partially coherent Bessel-Gaussian beams (BGBs), the coherence evolution of the partially coherent beams carrying optical vortices in non-Kolmogorov turbulence is investigated in detail. The analytical formulas for the spatial coherence length of partially coherent BGBs with optical vortices in non-Kolmogorov turbulence have been derived by using the combination of a coherence superposition approximation of decentered Gaussian beams and the extended Huygens-Fresnel principle. The influences of beam and turbulence parameters on spatial coherence are investigated by numerical examples. Numerical results reveal that the coherence of the partially coherent laser beam with vortices is independent of the optical vortices, and the spatial correlation length of the beams does not decrease monotonically during propagation in non-Kolmogorov turbulence. Within a certain propagation distance, the coherence of the partially coherent beam will improve, and the improvement of the coherence of the partially coherent beams is closely related to the beam and turbulence parameters.
机译:基于部分相干贝塞尔-高斯光束(BGB),详细研究了在非Kolmogorov湍流中带有光学涡旋的部分相干光束的相干演化。通过使用偏心高斯光束的相干叠加近似和扩展的惠更斯-菲涅耳原理相结合,得出了非相干BGB与光学涡旋在非Kolmogorov湍流中空间相干长度的解析公式。通过数值算例研究了束流和湍流参数对空间相干性的影响。数值结果表明,部分相干激光束与涡旋的相干性与光学涡旋无关,并且在非Kolmogorov湍流中传播期间,光束的空间相关长度不会单调减小。在一定的传播距离内​​,部分相干光束的相干性将得到改善,并且部分相干光束的相干性的提高与光束和湍流参数密切相关。

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