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Self-starting optical-electrical-optical homodyne clock recovery for phase-modulated signals

机译:用于相位调制信号的自动启动光学电气 - 光学型时钟恢复

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We propose a novel self-homodyne optical-electrical-optical clock recovery technique for binary phase-shift keying (BPSK) signals using commercial optical and electrical components. We present the principle of operation as well as a proof-of-concept experiment for a 10.7 Gb/s BPSK signal clock recovery transmitted over a dispersion-compensated link of 20 km of single-mode fiber. Suppression of pattern-related frequency noise at the output of the recovered clock is shown. The timing jitter of the recovered clock at 10.7 GHz was measured to be similar to 450 fs (integration range: 100 Hz-10 MHz). (C) 2017 Optical Society of America
机译:我们使用商业光学和电气部件提出了一种用于二进制相移键控(BPSK)信号的新型自我差异光学电光时钟恢复技术。 我们介绍了操作的操作原理以及概念证明实验,可通过单模光纤20公里的分散补偿链路传输的10.7 GB / s BPSK信号时钟恢复。 示出了抑制恢复时钟输出处的模式相关频率噪声。 测量回收的时钟的时序抖动为类似于450 FS(集成范围:100Hz-10MHz)。 (c)2017年光学学会

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