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40 Gbit/s All-optical Clock Recovery Based On The Injection Mode-locked Fiber Ring Laser

机译:基于注入锁模光纤环形激光器的40 Gbit / s全光时钟恢复

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摘要

All-optical clock recovery is a key technology in all-optical 3R (Re-timing, Re-shaping, Re-amplifying) regeneration. In this paper, we demonstrate an all-optical clock recovery circuit based on injection mode-locked fiber laser. We have successfully extracted 40 GHz optical clock pulse from 40Gb/s pseudorandom signal. Before the injected signal goes into the ring cavity, we make it pass a Mach-Zender interferometer (MZI) firstly. And thereby the clock component in the injected signal has been increased relatively, which is benefit to the clock recovery. We obtain firstly 10 GHz clock signal with perfect waveform from 10Gb/s pseudorandom data stream, and then we extract 40 GHz clock signal from 40 Gb/s pseudorandom signal.
机译:全光时钟恢复是全光3R(重新定时,重新定型,重新放大)再生的一项关键技术。在本文中,我们演示了一种基于注入锁模光纤激光器的全光时钟恢复电路。我们已经成功地从40Gb / s伪随机信号中提取了40 GHz光学时钟脉冲。在注入的信号进入环形腔之前,我们首先使其通过马赫曾德尔干涉仪(MZI)。因此,注入信号中的时钟分量已经相对增加,这有利于时钟恢复。我们首先从10Gb / s伪随机数据流中获得具有完美波形的10 GHz时钟信号,然后从40 Gb / s伪随机信号中提取40 GHz时钟信号。

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