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拉盖尔-高斯光束的目标探测散射分析。

Scattering analysis of a Laguerre Gaussian beam for target detection.

出版信息

Appl Opt. 2023 Apr 1;62(10):2669-2674. doi: 10.1364/AO.483314.

Abstract

The propagation and scattering characteristics of a Laguerre Gaussian (LG) beam and Gaussian beam are theoretically and experimentally comparatively studied. The phase of the LG beam is almost free of scattering when the scattering is weak, resulting in a much weaker loss of transmission compared with the Gaussian beam. However, when scattering is strong, the phase of the LG beam is completely disturbed by it, and the transmission loss of the LG beam is stronger than that of the Gaussian beam. Moreover, the phase of the LG beam becomes stabler as the topological charge increases, and the beam radius increases as well. Therefore, the LG beam is suitable for short-range target detection in a weak scattering medium, not for long-range in a strong scattering medium. This work will contribute to the development of target detection, optical communication, and other applications of orbital angular momentum beams.

摘要

拉盖尔-高斯(LG)光束和高斯光束的传播和散射特性在理论和实验上进行了比较研究。当散射较弱时,LG 光束的相位几乎不受散射影响,因此与高斯光束相比,传输损耗要小得多。然而,当散射较强时,LG 光束的相位完全被散射所干扰,LG 光束的传输损耗比高斯光束更强。此外,随着拓扑电荷的增加,LG 光束的相位变得更加稳定,光束半径也会增大。因此,LG 光束适用于弱散射介质中的短距离目标探测,而不适用于强散射介质中的长距离探测。这项工作将有助于目标探测、光通信和轨道角动量光束的其他应用的发展。

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