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首页> 外文期刊>Journal of Modern Optics >Propagation based on second-order moments for partially coherent Laguerre-Gaussian beams through atmospheric turbulence
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Propagation based on second-order moments for partially coherent Laguerre-Gaussian beams through atmospheric turbulence

机译:基于二阶矩的部分相干拉盖尔-高斯光束通过大气湍流的传播

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摘要

The Wigner distribution function (WDF) has been used to study the propagation properties of partially coherent Laguerre Gaussian (PCLG) beams through atmospheric turbulence. Based on the extended Huygens-Fresnel principle, an analytical formula of the propagation matrixes in terms of the second-order moments of the WDF for PCLG Beams in the receiving plane is derived. And then the analytical formulae for the curvature radii of PCLG Beams propagating in turbulence are given by the second-order moments of the WDF. The numerical results indicate that the curvature radius of PCLG Beams changes more rapidly in turbulence than that in the free space. The influence of the transverse coherence width and the beam waist width on the curvature radius of PCLG Beams is obvious, while the laser wavelength and the inner scale of turbulence have a slight effect. The study results may be useful for remote sensing and free space optical communications.
机译:Wigner分布函数(WDF)已用于研究部分相干Laguerre高斯(PCLG)光束通过大气湍流的传播特性。基于扩展的惠更斯-菲涅耳原理,推导了接收平面中PCLG光束在WDF的二阶矩方面的传播矩阵解析公式。然后,由WDF的二阶矩给出了湍流中PCLG梁的曲率半径的解析公式。数值结果表明,与自由空间相比,PCLG梁的曲率半径在湍流中变化更快。横向相干宽度和束腰宽度对PCLG光束的曲率半径的影响是明显的,而激光波长和湍流的内部尺度则影响不大。研究结果可能对遥感和自由空间光通信很有用。

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