Topological charge identification of superimposed orbital angular momentum beams under turbulence using an attention mechanism

Author:

Zhang YiwenORCID,Zhao WenqianORCID,Xu Tianxu1,Ren Yongxiong2,Zhang Runzhou2ORCID,Pan Zhongqi3,Yue YangORCID

Affiliation:

1. Zhengzhou University

2. University of Southern California

3. University of Louisiana at Lafayette

Abstract

Due to the unique features, orbital angular momentum (OAM) beams have been widely explored for different applications. Accurate determination of the topological charge (TC) of these beams is crucial for their optimal utilization. In this paper, we propose a method that combines adaptive image processing techniques with a simple, parameter-free attention module (SimAM) based convolutional neural network to accurately identify the TC of high-order superimposed OAM beams. Experimental results demonstrate that under the combined influence of non-extreme light intensity and turbulence, it can achieve >95% identification accuracy of TCs ranging from ±1 to ±40. Moreover, even under partial-pattern-missing conditions, our method maintains an accuracy rate of over 80%. Compared with traditional attention mechanisms, SimAM does not require additional network design, significantly reducing the computational costs. Our approach showcases remarkable efficiency, robustness, and cost-effectiveness, making it adaptable to challenging factors such as non-uniform lighting and partially occluded light paths. This research provides a new direction for recognizing OAM modes with valuable implications for the future of communication systems.

Funder

Shaanxi Province Innovation Talent Promotion Program-Science and Technology Innovation Team

Natural Science Foundation of Shanxi Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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