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Nonlocal Nonlinear Electro-Optic Phase Dynamics Demonstrating 10 Gb/s Chaos Communications

机译:演示10 Gb / s混沌通信的非局部非线性电光相位动力学

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We report on successful 10 Gb/s transmission of a message hidden in a chaotic optical phase over more than 100 km of an installed fiber optic network. This represents the best performance to date for so-called optical chaos communication, a physical layer oriented optical data encryption technique. Such performances was achieved through the use of a recently developed electro-optic nonlinear delay phase dynamics, inspired from differential phase modulation techniques. The setup appears as a superior alternative to the most popular architectures, i.e., the ones involving laser rate equations subjected to delayed feedback. It is compatible with standard dispersion compensation techniques and optical amplification, as shown by two field experiments over installed fiber optic networks.
机译:我们报告了在已安装的光纤网络超过100 km的情况下,成功地将10 Gb / s的消息隐藏在混乱的光相位中,从而成功进行了传输。这代表了迄今为止所谓的光学混沌通信的最佳性能,这是一种面向物理层的光学数据加密技术。这种性能是通过使用最新开发的电光非线性延迟相位动力学来实现的,该动力学受差分相位调制技术的启发。该设置似乎是最流行架构的优秀替代方案,即涉及受延迟反馈影响的激光速率方程的架构。它与标准色散补偿技术和光学放大兼容,如通过已安装的光纤网络进行的两次现场实验所示。

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