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10GHz All-Opitcal Packet Clock Recovery with Ultrafast Locking and Unlocking Time via XPM effect of the SOA

机译:通过SOA的XPM效果,具有超快的锁定和解锁时间的10GHz全功能包时钟恢复

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Short locking and unlocking time is essepecially important in the packet clock recovery, as it determines the network resource utilization. This paper presents a novel 10-GHz all-optical packet clock extractor with ultrafast locking and unlocking time via self-phase modulation (SPM) effect of the semiconductor optical amplifier (SOA). Low finesse Fabry-Perot (F-P) filter and a saturated SOA, in cascade, are used to directly extract the packet clock from the data stream. An optical bandpass filter(OBPF) is used to filter out the red-shifted parts of the packet clock in order to reduce the locking and unlocking time. We analytically investigate the impact of the locking and unlocking time thanks to the self-gain modulation (SGM) effect and self-phase modulation(SPM) effect induced by the SOA, and demonstrate 10GHz clock extraction with the establishing time of 200ps and vanishing time of 600ps experimentally.
机译:较短的锁定和解锁时间在数据包时钟恢复中尤为重要,因为它决定了网络资源的利用率。本文提出了一种新颖的10 GHz全光分组时钟提取器,它通过半导体光放大器(SOA)的自相位调制(SPM)效应具有超快的锁定和解锁时间。级联的低精细Fabry-Perot(F-P)过滤器和饱和SOA用于直接从数据流中提取数据包时钟。光学带通滤波器(OBPF)用于滤除数据包时钟的红移部分,以减少锁定和解锁时间。我们分析研究了SOA引起的自增益调制(SGM)效应和自相位调制(SPM)效应对锁定和解锁时间的影响,并演示了建立时间为200ps和消失时间为10GHz的时钟提取在实验中为600ps。

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