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All-optical NRZ-DPSK clock recovery using linearly chirped fiber Bragg grating induced clock tone

机译:使用线性chi光纤布拉格光栅感应的时钟音调的全光NRZ-DPSK时钟恢复

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摘要

All-optical clock recovery (CR) from 10 Gbps nonreturn-to-zero differential phase-shift-keying (NRZ-DPSK) signal is experimentally demonstrated, by introducing the chromatic dispersion induced clock tone into a free-running semiconductor optical amplifier (SOA) based fiber ring laser for achieving mode-locking. Since no special component is required for NRZ-DPSK demodulation, our proposed method is very promising because of its simple configuration and better stability. The good performance of our proposed configuration is fulfilled with a linearly chirped fiber Bragg grating (LCFBG) to regenerate clock tone of the NRZ-DPSK signal. The recovered clock signal with the extinction ratio of 17 dB and the root-mean-square timing jitter of 540 fs is achieved under 2~(31) - 1 pseudorandom binary sequence NRZ-DPSK signals measurement. Due to the same operation principle, our configuration has the potential to implement all-optical CR for NRZ-DPSK signal with data rate up to 40 Gbps.
机译:通过将色散引起的时钟音引入到自由运行的半导体光放大器(SOA)中,实验证明了从10 Gbps不归零差分相移键控(NRZ-DPSK)信号的全光时钟恢复(CR) )光纤环形激光器以实现锁模。由于NRZ-DPSK解调不需要特殊的组件,因此我们提出的方法具有简单的配置和更好的稳定性,因此非常有前途。我们提出的配置的良好性能可以通过线性chi光纤布拉格光栅(LCFBG)来实现,以重新生成NRZ-DPSK信号的时钟音调。在2〜(31)-1伪随机二进制序列NRZ-DPSK信号测量下,获得了消光比为17 dB,均方根定时抖动为540 fs的恢复时钟信号。由于相同的工作原理,我们的配置有可能为数据速率高达40 Gbps的NRZ-DPSK信号实现全光CR。

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