窃听
光通信
计算机科学
稳健性(进化)
结构光
传输(电信)
编码(内存)
拦截
电子工程
自由空间光通信
键控
无线
软件部署
通信系统
光纤
安全传输
人为噪声
调制(音乐)
光无线
数据传输
计算机网络
钥匙(锁)
电磁干扰
信息传输
通信安全
安全通信
信噪比(成像)
安全性分析
调幅键控
工程类
作者
Mingze Cai,Zhenyu Wan,Yuzhuo Cao,Runshi Wang,Yu Zhang,Jing Du,Yì Wáng
摘要
Free-space optical (FSO) communication offers high capacity, license-free spectrum, and immunity to electromagnetic interference, making it a promising solution for future wireless links. However, practical deployment of FSO systems remains challenged by issues of link security and reliable transmission under atmospheric turbulence. In this work, we investigate the use of nonseparability encoding based on vectorial structured light as a turbulence-resilient and secure transmission approach. Through simulations and experiments, we compare multi-level nonseparability encoding with conventional amplitude modulation under various turbulence strengths and eavesdropping scenarios. The results demonstrate that vectorial structured light exhibits inherent security advantages, imposing higher optical signal-to-noise ratio penalties on eavesdroppers and making information recovery from partial interception significantly more difficult. These findings confirm the potential of nonseparability-based encoding for enhancing both security and robustness in FSO communication systems.
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