光学
角动量
自适应光学
自由空间光通信
物理
端到端原则
光通信
无线
光的轨道角动量
计算机科学
电信
总角动量
计算机网络
量子力学
作者
Panpan Xu,Huan Chang,Fei Wang,Ran Gao,Dong Guo,Lei Zhu,Zhipei Li,Sitong Zhou,Qi Xu,Jing Chen,Xiangjun Xin
出处
期刊:Optics Letters
[The Optical Society]
日期:2025-04-16
卷期号:50 (10): 3265-3265
摘要
In this Letter, we demonstrate high-precision end-to-end adaptive optics (AO) technique based on the X-Shape Fusion Transformer-convolutional neural network (XFTC-Net) without an additional probe path to compensate for distortions caused by atmospheric turbulence (AT) in orbital angular momentum (OAM) optical wireless communication links. The experimental results show that the XFTC-Net effectively extracts the intensity distribution features of distorted OAM beams, predicting AT phase screens and identifying OAM modes. After XFTC-Net-aided AO compensation, the bit error rate of the OAM optical communication system remains below 3.8 × 10 −3 , staying within C n 2 =1×10 −15 –1 × 10 −13 m −2/3 . Moreover, the optical power with l = 3 increases from 5.08 dBm to 8.23 dBm at a transmission distance of 800 m. These experimental results indicate that the proposed XFTC-Net AO technique effectively compensates for OAM beam distortion in both single- and multiplexed-channel OAM links, which effectively balances the system complexity and transmission performance of OAM-based free space optical (FSO) communication systems, opening up new avenues for enhancing the performances of high-capacity optical communication.
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