Inversion of Orbital-Angular-Momentum Light Field Based on a Diffuser

Xiaoli Yin, Di Hu, Huan Chang, Zhaoyuan Zhang, Tong Zheng
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引用次数: 1

Abstract

Recently, orbital angular momentum (OAM) beams have been applied in free space optical communication (FSOC) to build a high-capacity communication link. However, the light field information of OAM beam is difficult to be detected directly and quickly. Herein, this paper demonstrates a detector using speckle-correlation scattering matrix (SSM) imaging technology based on a diffuser and proposes a generalized hybrid input-output algorithm (GHIOA) for iterative optimization of the OAM inversion light field. As an application example, inversion of OAM field without reference light is realized employing SSM approach, by using the optical transmission matrix of strong scattering medium as a diffuser. The simulation results illustrate that the approach can improve the retrieval effect of OAM light field, when the sampling parameter is 4, and the average correlation rate of the inversion OAM filed is increased by about 200% after using GHIOA.
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基于漫射器的轨道角动量光场反演
近年来,轨道角动量(OAM)光束已被应用于自由空间光通信(FSOC)中,以建立一个大容量的通信链路。然而,直接、快速地检测OAM光束的光场信息是困难的。本文介绍了一种基于扩散器的散斑相关散射矩阵(SSM)成像技术的探测器,并提出了一种用于OAM反演光场迭代优化的广义混合输入输出算法(ghoa)。作为应用实例,采用SSM方法,利用强散射介质的光传输矩阵作为扩散器,实现了无参考光的OAM场反演。仿真结果表明,当采样参数为4时,该方法可以提高OAM光场的检索效果,并且使用GHIOA后反演OAM场的平均相关率提高了约200%。
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