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Fiber nonlinearity mitigation of WDM-PDM QPSK/16-QAM signals using fiber-optic parametric amplifiers based multiple optical phase conjugations

机译:使用基于多光学相位共轭的光纤参量放大器减少WDm-pDm QpsK / 16-Qam信号的光纤非线性

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摘要

We demonstrate fiber nonlinearity mitigation by using multiple optical phase conjugations (OPCs) in the WDM transmission systems of both 8 x 32-Gbaud PDM QPSK channels and 8 x 32-Gbaud PDM 16-QAM channels, showing improved performance over a single mid-span OPC and no OPC in terms of nonlinear threshold and a best achievable Q(2) factor after transmission. In addition, after an even number of OPCs, the signal wavelength can be preserved after transmission. The performance of multiple OPCs for fiber nonlinearity mitigation was evaluated independently for WDM PDM QPSK signals and WDM PDM 16QAM signals. The technique of multiple OPCs is proved to be transparent to modulation formats and effective for different transmission links. In the WDM PDM QPSK transmission system over 3600 km, by using multiple OPCs the nonlinear threshold (i.e. optimal signal launched power) was increased by similar to 5 dB compared to the case of no OPC and increased by similar to 2 dB compared to the case of mid-span OPC. In the WDM PDM 16-QAM transmission system over 912 km, by using the multiple OPCs the nonlinear threshold was increased by similar to 7 dB compared to the case of no OPC and increased by similar to 1 dB compared to the case of mid-span OPC. The improvements in the best achievable Q(2) factors were more modest, ranging from 0.2 dB to 1.1 dB for the results presented. (C) 2017 Optical Society of America
机译:我们通过在8 x 32 Gbaud PDM QPSK通道和8 x 32 Gbaud PDM 16-QAM通道的WDM传输系统中使用多个光学相位共轭(OPC),证明了光纤非线性的缓解,它们显示了在单个中跨中的性能提高OPC和没有OPC的非线性阈值和传输后可获得的最佳Q(2)因子。另外,在偶数OPC之后,可以在传输后保留信号波长。对于WDM PDM QPSK信号和WDM PDM 16QAM信号,独立评估了多个OPC的光纤非线性缓解性能。事实证明,多种OPC技术对调制格式是透明的,并且对不同的传输链路有效。在3600公里以上的WDM PDM QPSK传输系统中,通过使用多个OPC,与没有OPC的情况相比,非线性阈值(即最佳信号发射功率)增加了大约5 dB,与没有OPC的情况相比增加了大约2 dB中跨OPC。在912公里以上的WDM PDM 16-QAM传输系统中,通过使用多个OPC,与没有OPC的情况相比,非线性阈值增加了大约7 dB,与中跨情况相比,增加了大约1 dB OPC。最佳可实现的Q(2)因子的改进较为适度,所给出的结果范围为0.2 dB至1.1 dB。 (C)2017年美国眼镜学会

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