A novel all-optical clock recovery scheme

Fei Wang, Xinliang Zhang, E. Xu, Yu Zhang
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Abstract

We experimentally demonstrate all-optical clock recovery (CR) from the nonreturn-to-zero (NRZ) data without any preprocess measure. Multi-quantum-well (MQW) Fabry-Pérot semiconductor optical amplifier (FP-SOA) acts as dual role including both data format converter and clock recovery device. To achieve amplitude equalization of recovered clock pulses, a self-nonlinear polarization switching (SNPS) including the FP-SOA, two polarization controllers (PCs) and one polarization beam splitter (PBS) is employed. Using the presented scheme, stable and low jitter 35.80 GHz optical clock pulses were directly extracted out from input NRZ data. This scheme has some distinct advantages such as being transparent to data format, free preprocess, free pre-amplification, convenient tuning, good tolerance to long “0s” data, and good tolerance to wavelength drifting of input data.
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一种新的全光时钟恢复方案
我们通过实验证明了在没有任何预处理措施的情况下,从非归零(NRZ)数据中实现全光时钟恢复(CR)。多量子阱(MQW)法布里-帕姆罗特半导体光放大器(FP-SOA)兼具数据格式转换器和时钟恢复器件的双重作用。为了实现恢复时钟脉冲的幅度均衡,采用了由FP-SOA、两个极化控制器(pc)和一个极化分束器(PBS)组成的自非线性极化开关(SNPS)。利用该方案,直接从输入的NRZ数据中提取出稳定、低抖动的35.80 GHz光时钟脉冲。该方案具有数据格式透明、预处理自由、预放大自由、调优方便、对长“0”数据的容忍度好、对输入数据波长漂移的容忍度好等显著优点。
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