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基于模态分解的光学旋转多普勒效应失准分析。

Analysis of misaligned optical rotational Doppler effect by modal decomposition.

作者信息

Ding You, Ren Yuan, Liu Tong, Qiu Song, Wang Chen, Li Zhimeng, Liu Zhengliang

出版信息

Opt Express. 2021 May 10;29(10):15288-15299. doi: 10.1364/OE.424943.

Abstract

The optical rotational Doppler effect (RDE) is closely related to the unique orbital angular momentum (OAM) carried by optical vortex, whose topological charge means the mode of OAM. Compared with the coaxial incidence, the rotational Doppler frequency shift spectrum of a misaligned optical vortex (misaligned RDE) widens according to a certain law. In this paper, an OAM modal decomposition method of the misaligned optical RDE is proposed and the relative intensity of different OAM modes, namely the OAM spectrum, is derived based on an inner product computation. Analyses show that lateral displacements and angular deflections change the distribution of OAM modes relative to the rotation axis of the object. A misaligned Laguerre-Gaussian (LG) vortex can be represented as a specific combination of coaxial LG modes, and the difference between the topological charge of two adjacent modes is 1 or 2 with lateral displacements or angular deflections respectively. An experiment of misaligned optical RDE using a superimposed LG vortex is executed, and the obtained frequency shift spectrum with misaligned incidence expands into a set of discrete signals, which agrees well with the theoretical results. Moreover, we can get the rotation frequency of the object from an expanded frequency spectrum more quickly and accurately based on the difference between two adjacent signal peaks. The proposed method contributes to analyze the misaligned optical RDE comprehensively, which is significant in remote sensing and optical metrology.

摘要

光学旋转多普勒效应(RDE)与光学涡旋所携带的独特轨道角动量(OAM)密切相关,其拓扑电荷表示OAM的模式。与同轴入射相比,非对准光学涡旋的旋转多普勒频移光谱(非对准RDE)会按照一定规律展宽。本文提出了一种非对准光学RDE的OAM模态分解方法,并基于内积计算推导了不同OAM模式的相对强度,即OAM光谱。分析表明,横向位移和角偏转改变了OAM模式相对于物体旋转轴的分布。一个非对准的拉盖尔 - 高斯(LG)涡旋可以表示为同轴LG模式的特定组合,并且两个相邻模式的拓扑电荷之差在横向位移或角偏转时分别为1或2。利用叠加的LG涡旋进行了非对准光学RDE实验,得到的非对准入射频移光谱扩展为一组离散信号,与理论结果吻合良好。此外,基于两个相邻信号峰值之间的差异,我们可以更快、更准确地从扩展频谱中获取物体的旋转频率。所提出的方法有助于全面分析非对准光学RDE,这在遥感和光学计量中具有重要意义。

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