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Transmission characteristics of Bessel Gaussian vortex beams propagating along both longitudinal and transverse directions in a subway tunnel

机译:沿隧道纵向和横向传播的贝塞尔高斯涡旋光束的传输特性

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摘要

By exploiting the non-Kolmogorov model and Rytov approximation theory, a propagation model of Bessel-Gaussian vortex beams (BGVB) propagating in a subway tunnel is derived. Based on the propagation model, a model of orbital angular momentum (OAM) mode probability distribution is established to evaluate the propagation performance when the beam propagates along both longitudinal and transverse directions in the subway tunnel. By numerical simulations and experimental verifications, the influences of the various parameters of BGVB and turbulence on the OAM mode probability distribution are evaluated, and the results of simulations are consistent with the experimental statistics. The results verify that the middle area of turbulence is more beneficial for the vortex beam propagation than the edge; when the BGVB propagates along the longitudinal direction in the subway tunnel, the effects of turbulence on the OAM mode probability distribution can be decreased by selecting a larger anisotropy parameter, smaller coherence length, larger non-Kolmogorov power spectrum coefficient, smaller topological charge number, deeper subway tunnel, lower train speed, and longer wavelength. When the BGVB propagates along the transverse direction, the influences can be also mitigated by adopting a larger topological charge number, less non-Kolmogorov power spectrum coefficient, smaller refractive structure index, shorter wavelength, and shorter propagation distance.
机译:利用非Kolmogorov模型和Rytov近似理论,推导了在地铁隧道中传播的贝塞尔-高斯涡旋光束(BGVB)的传播模型。基于传播模型,建立了轨道角动量(OAM)模式概率分布模型,以评估光束在地铁隧道中沿纵向和横向传播时的传播性能。通过数值模拟和实验验证,评价了BGVB和湍流参数对OAM模式概率分布的影响,模拟结果与实验统计吻合。结果证明,湍流的中间区域比边缘更有利于涡旋光束的传播。当BGVB在地铁隧道内沿纵向传播时,可以通过选择较大的各向异性参数,较小的相干长度,较大的非Kolmogorov功率谱系数,较小的拓扑电荷数来减小湍流对OAM模式概率分布的影响,较深的地铁隧道,较低的火车速度和更长的波长。当BGVB沿横向传播时,通过采用较大的拓扑电荷数,较少的非Kolmogorov功率谱系数,较小的折射结构指数,较短的波长和较短的传播距离,也可以减轻影响。

著录项

  • 来源
    《Optical engineering 》 |2018年第2期| 024105.1-024105.9| 共9页
  • 作者

    Xiaohui Wang; Yingxiong Song;

  • 作者单位

    Shanghai University, Key Laboratory of Specialty Optics and Optical Access Networks, Shanghai Institute for Advanced Communication and Data Science, Shanghai, China,Huaiyin Institute of Technology, Faculty of Electronic Information Engineering, Huaian, China;

    Shanghai University, Key Laboratory of Specialty Optics and Optical Access Networks, Shanghai Institute for Advanced Communication and Data Science, Shanghai, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    vortex beams; orbital angular momentum; OAM mode probability spectrum; subway tunnel;

    机译:涡旋光束轨道角动量OAM模式概率谱;地铁隧道;

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