Gao Zhensen, Liao Lei, Su Biao, Wu Qiongqiong, Gao Xulin, Fu Songnian, Li Zhaohui, Wang Yuncai, Qin Yuwen
Opt Lett. 2022 Oct 1;47(19):5232-5235. doi: 10.1364/OL.472489.
Achieving photonic layer security at the lowest network layer to supplement the upper layer digital cryptography in fiber-optic networks is a constant pursuit but a critical challenge. In this Letter, we propose and experimentally demonstrate a high-speed photonic-layer secure optical communication system based on a novel, to the best of our knowledge, common noise driven synchronous private temporal phase en/decryption scheme, which is capable of supporting high-order modulation formats and enhancing security. A record high bit rate of 56 Gb/s 4-level pulse amplitude modulation (PAM4) confidential signal is successfully encrypted and decrypted by remotely synchronized private noise-like en/decryption signals after secret transmission over 20 km of optical fiber with a bit-error-rate (BER) lower than the hard-decision forward error correction (HD-FEC) limit. The demonstrated scheme may provide a promising way for future ultrahigh-speed photonic-layer secure optical communication.
在光纤网络的最低网络层实现光子层安全以补充上层数字加密技术是一个持续的追求,但也是一项关键挑战。在本信函中,据我们所知,我们基于一种新颖的通用噪声驱动同步私密时间相位加/解密方案,提出并通过实验证明了一种高速光子层安全光通信系统,该方案能够支持高阶调制格式并增强安全性。在通过20公里光纤进行秘密传输后,一个创纪录的56 Gb/s 4电平脉冲幅度调制(PAM4)机密信号被远程同步的类似私密噪声的加/解密信号成功加密和解密,误码率(BER)低于硬判决前向纠错(HD-FEC)极限。所展示的方案可能为未来超高速光子层安全光通信提供一条有前景的途径。