各向异性湍流大气中部分相干拉盖尔脉冲矢量涡旋光束的演化特性

Pub Date : 2023-08-26 DOI:10.1007/s10946-023-10151-9
Bangzhuo An, Yonggen Xu, Wenli Liu, Nianchi Hao, Yongtao Liu, Xueru Deng
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引用次数: 0

摘要

基于扩展的惠更斯-菲涅耳原理,导出了部分相干拉盖尔脉冲矢量涡旋光束(PCLPVVB)在各向同性和各向异性大气湍流中传播的交谱密度矩阵的解析表达式。研究结果表明,大气湍流影响了PCLPVVB的光谱强度分布演变,强湍流使光束在传播过程中迅速退化。我们还可以发现,与非涡旋光束相比,具有较大拓扑电荷的PCLPVVB具有更强的抵抗大气湍流退化的能力。此外,增加初始相干长度和模阶可以提高PCLPVVB的抗湍流能力,脉冲持续时间显著影响PCLPVVB在湍流中的光谱强度。本文的研究成果对激光雷达探测、遥感、自由空间光通信等领域具有重要的应用价值。
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Evolution Properties of a Partially Coherent Laguerre Pulsed Vector Vortex Beam in a Turbulent Atmosphere with Anisotropy

Based on the extended Huygens–Fresnel principle, we derive the analytical expression of the crossspectral density matrix of a partially coherent Laguerre pulsed vector vortex beam (PCLPVVB) propagating through isotropic and anisotropic atmospheric turbulence. Our outcomes reveal that the atmospheric turbulence affects the evolution of spectral intensity distribution of PCLPVVB, and the beam quickly degenerates on propagation in the strong turbulence. We also can find that PCLPVVB with a larger topological charge has a stronger ability to resist the degeneration caused by atmospheric turbulence in comparison with the non-vortex beam. In addition, increasing the initial coherence length and mode order can increase the anti-turbulence ability of PCLPVVB, and the pulse duration significantly affects the spectral intensity of PCLPVVB in turbulence. Our research results are important for some applications in laser radar detection, remote sensing, and free-space optical communication.

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