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基于时间色散和自反馈相位加密的200公里32 Gb/s物理层安全光通信

32 Gb/s physical-layer secure optical communication over 200 km based on temporal dispersion and self-feedback phase encryption.

作者信息

Gao Zhensen, Li Qihua, Zhang Lihong, Tang Bin, Luo Ying, Gao Xulin, Fu Songnian, Li Zhaohui, Wang Yuncai, Qin Yuwen

出版信息

Opt Lett. 2022 Feb 15;47(4):913-916. doi: 10.1364/OL.451314.

Abstract

Providing physical layer security at the lowest network layer in fiber-optic communication systems is a technical challenge worldwide. Here, we propose and experimentally demonstrate a pure hardware optical encryption scheme based on temporal spreading and self-feedback phase encryption for high-speed and long-distance physical-layer secure optical communication. A record high bit-rate-distance product of 6400 Gb/s km is successfully achieved by the secure transmission of a 32 Gb/s on-off-keying modulated confidential signal over a 200 km optical fiber link. The demonstrated scheme is fully compatible with conventional optical transmission systems and can be operated in a pluggable manner, which may pave a new path to ultra-high-speed physical-layer secure optical communication in the future.

摘要

在光纤通信系统的最低网络层提供物理层安全是一项全球性的技术挑战。在此,我们提出并通过实验证明了一种基于时间扩展和自反馈相位加密的纯硬件光学加密方案,用于高速和长距离物理层安全光通信。通过在200公里光纤链路上安全传输32 Gb/s开关键控调制的机密信号,成功实现了创纪录的6400 Gb/s km的高比特率-距离积。所展示的方案与传统光传输系统完全兼容,并且可以以可插拔的方式运行,这可能为未来超高速物理层安全光通信开辟一条新路径。

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