Single-channel 800 Gbit/s asynchronous all-optical amplitude-division demultiplexing based on polarization-independent GHz Raman soliton in fiber

M. Kato, K. Fujiura, T. Kurihara
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引用次数: 10

Abstract

We demonstrate error-free asynchronous all-optical time-division and amplitude-division demultiplexing based on polarization-independent TDM-WDM conversion, which realizes an intensity-dependent self-frequency shift in GHz Raman soliton. An 800 Gbit/s (128 /spl times/ 6.3 Gbit/s) optical TDM signal is simultaneously demultiplexed to 6.3 Gbit/s multiple-channel signals. We demultiplex a random data signal with a time slot of narrower than 800 fs corresponding to a 1.28 Tbit/s OTDM signal. Furthermore, our demultiplexer is capable of demultiplexing from overlapping OTDM signals with 2.0 ps pulse width and 780 fs time delay.
光纤中基于偏振无关GHz拉曼孤子的单通道800gbit /s异步全光幅分解复用
本文提出了一种基于偏振无关TDM-WDM转换的无差错异步全光时分和幅分解复用技术,实现了GHz拉曼孤子中强度相关的自频移。800gbit /s (128 /spl倍/ 6.3 Gbit/s)的TDM光信号可同时解复用为6.3 Gbit/s的多路信号。我们解复用一个时隙小于800fs的随机数据信号,对应于1.28 Tbit/s的OTDM信号。此外,我们的解复用器能够以2.0 ps的脉冲宽度和780 fs的时间延迟对重叠的OTDM信号进行解复用。
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