Liang Xiaoqian, Bai Yanfeng, Chen Lei, Zhu Xiaohui, Zhou Weijun, Zhou Liyu, Fu Qin, Zhou Qi, Zou Xuanpengfan, Tan Wei, Huang Xianwei, Yin Longfei, Fu Xiquan
Opt Lett. 2025 Jul 1;50(13):4162-4165. doi: 10.1364/OL.560664.
The orbital angular momentum (OAM) of beams has important applications in various fields such as large-capacity data transmission, imaging, and quantum information. So the precise measurement of the OAM spectrum is critical. Here, we present a direct and efficient method for measuring the OAM spectrum in a scattering medium using a Faraday atomic filter. Experimental results show that the Faraday atomic filter offers significant advantages in accurately identifying OAM under scattering media when compared to the results in the filterless device and the polarizer. Our work presents a novel, to the best of our knowledge, approach to precisely measure the OAM spectrum of vortex beams in complex scattering environments and will contribute to the advancement of various applications, including optical communications, lidar, and others.
光束的轨道角动量(OAM)在大容量数据传输、成像和量子信息等各个领域都有重要应用。因此,OAM 光谱的精确测量至关重要。在此,我们提出一种使用法拉第原子滤波器在散射介质中测量 OAM 光谱的直接且高效的方法。实验结果表明,与无滤波器装置和偏振器的结果相比,法拉第原子滤波器在准确识别散射介质下的 OAM 方面具有显著优势。据我们所知,我们的工作提出了一种新颖的方法来精确测量复杂散射环境中涡旋光束的 OAM 光谱,并将有助于推进包括光通信、激光雷达等在内的各种应用。