首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Investigation of crosstalk suppression techniques for multi-wavelength regeneration based on data-pump FWM
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Investigation of crosstalk suppression techniques for multi-wavelength regeneration based on data-pump FWM

机译:基于数据泵FWM的多波长再生串扰抑制技术研究

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摘要

Multi-wavelength regenerators free of inter-channel crosstalk are desirable for wavelength-division-multiplexing systems from the cost-effectiveness point of view. Three crosstalk suppression methods, including polarization multiplexing, time interleaving and bidirectional transmission, are experimentally investigated in a data-pump four-wave mixing (FWM)-based dual-wavelength regeneration system. The results show that: (1) polarization multiplexing can suppress inter-channel degenerate FWM, but it cannot suppress the non-degenerate FWM unless the fiber has a sufficiently high birefringence; (2) the optimal relative delay time is half a bit period for input signals with 50% duty cycle in the time-interleaving system; (3) in the bidirectional system, if the regenerated signal and the opposite input signal have the same wavelength, the influence of the scattering wave should be considered. Furthermore, an eight-wavelength regeneration scheme is put forward and the inter-modulation characteristics of the regenerated channels are calculated from the nonlinear coupled-mode equations. The Q factor of each regenerated channel can be more than doubled when the duty cycle is 0.2 and the fiber DGD is 40 ps/km.
机译:从成本效益的角度来看,对于波分复用系统来说,期望没有通道间串扰的多波长再生器。在基于数据泵四波混频(FWM)的双波长再生系统中,对三种串扰抑制方法进行了实验研究,包括极化复用,时间交织和双向传输。结果表明:(1)偏振复用可以抑制信道间退化的FWM,但除非光纤具有足够高的双折射,否则它不能抑制非退化的FWM。 (2)在时间交织系统中,占空比为50%的输入信号的最佳相对延迟时间为半个比特周期; (3)在双向系统中,如果再生信号和相反的输入信号具有相同的波长,则应考虑散射波的影响。此外,提出了一种八波长再生方案,并根据非线性耦合模态方程计算了再生通道的互调特性。当占空比为0.2且光纤DGD为40 ps / km时,每个再生通道的Q因子可以增加一倍以上。

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