Gu Shuangquan, Zhou Pei, Lau Kuenyao, Li Nianqiang
Opt Lett. 2024 Sep 1;49(17):4795-4798. doi: 10.1364/OL.533696.
Enhancing physical layer encryption in fiber-optic networks remains a challenging yet vital task. In this Letter, we propose a simplified coherent chaotic secure optical communication scheme based on the Kramers-Kronig (KK) receiver. This scheme incorporates a semiconductor laser with a phase-conjugated optical feedback serving as a common chaotic source, and its chaotic output is directly injected into the two slave lasers arranged separately at the transmitter and receiver end to achieve high-quality synchronization of chaotic signals, with a corresponding chaotic bandwidth of 30.6 GHz. By virtue of the common-signal-induced broad chaotic synchronization, a proof-of-principle demonstration is successfully conducted. It involves the secure transmission of a 20 Gbaud 16-level quadrature amplitude modulation (16QAM) signal over a 50 km standard single-mode fiber (SSMF) link. At the receiver end, we deploy a KK receiver to reconstruct the field of the optical signal and hence enable signal compensation and recovery with offline digital signal processing (DSP). This method simplifies device requirements in the current chaotic coherent optical secure communication, offering a cost-effective mode and promising path for advancing physical layer encryption in inter-data center communications.
增强光纤网络中的物理层加密仍然是一项具有挑战性但至关重要的任务。在本信函中,我们提出了一种基于克莱默斯-克勒尼希(KK)接收机的简化相干混沌安全光通信方案。该方案采用具有相位共轭光反馈的半导体激光器作为公共混沌源,其混沌输出直接注入分别布置在发射端和接收端的两个从激光器,以实现混沌信号的高质量同步,相应的混沌带宽为30.6吉赫兹。借助公共信号诱导的宽带混沌同步,成功进行了原理验证演示。它涉及在50千米标准单模光纤(SSMF)链路上安全传输20吉波特16电平正交幅度调制(16QAM)信号。在接收端,我们部署了一个KK接收机来重建光信号的场,从而通过离线数字信号处理(DSP)实现信号补偿和恢复。该方法简化了当前混沌相干光安全通信中的设备要求,为推进数据中心间通信中的物理层加密提供了一种经济高效的模式和有前景的途径。