部分相干电磁双曲正弦高斯涡流束穿过各向异性大气湍流的传播特性

Jingjing Cao, Rufeng Tang, Kai Huang, Yuqiang Li, Yonggen Xu
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引用次数: 0

摘要

利用扩展惠更斯-菲涅尔原理和雷托夫近似,从理论上推导出了各向异性大气湍流中部分相干电磁双曲正弦高斯涡旋光束(PCEShVB)的传播解析公式。对湍流中光束的平均强度、相干度(DOC)和极化度(DOP)的演变特征进行了详细研究。结果表明,在传播过程中,光束的强度分布将呈现螺旋结构,光斑的整体分布将沿着与拓扑电荷符号相关的方向旋转。PCEShVB 的 DOC 分布会随着传播距离的增加而显示出类似光束干涉条纹的模式,"干涉条纹 "的数量受双曲正弦参数的影响很大。此外,初始相干长度和双曲正弦参数较大的 PCEShVB 会增加光斑的分离度,产生较大的 DOP。最后,为了验证理论结论,采用随机相屏法模拟了 PCEShVB 在各向异性大气湍流中的传播。研究表明,模拟结果与理论预测一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Propagation properties of partially coherent electromagnetic hyperbolic-sine-Gaussian vortex beam through anisotropic atmospheric turbulence
Utilizing the extended Huygens-Fresnel principle and the Rytov approximation, the analytical formula for the propagation of a partially coherent electromagnetic hyperbolic-sine-Gaussian vortex beam (PCEShVB) in anisotropic atmospheric turbulence has been theoretically derived. Detailed studies have been conducted on the evolution characteristics of average intensity, the degree of coherence (DOC) and the degree of polarization (DOP) of the beam in turbulence. The results show that during propagation, the intensity distribution of the beam will exhibit a spiral structure, and the overall distribution of light spots will rotate in a direction related to the sign of the topological charge. The DOC distribution of PCEShVB will display a pattern reminiscent of beam interference fringes with an increase in propagation distance, with the number of 'interference fringes' greatly impacted by the hyperbolic sine parameter. Furthermore, PCEShVB with large initial coherent length and hyperbolic sine parameter will increase the degree of separation of the spots and yield a large DOP. Finally, for the validation of the theoretical findings, the random phase screen method was employed to simulate the propagation of PCEShVB through anisotropic atmospheric turbulence. The studies revealed a consistent alignment between the simulation results and the theoretical predictions.
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