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通过自种子受激布里渊散射实现多通道克拉默斯-克勒尼希接收器的增强型共偏振抑制比

Enhanced CSPR for a multichannel Kramers-Kronig receiver by self-seeded stimulated Brillouin scattering.

作者信息

Zhang Honghui, Zhang Qiulin, Xie Qijie, Shu Chester

出版信息

Opt Lett. 2021 Feb 1;46(3):661-664. doi: 10.1364/OL.414385.

Abstract

We demonstrate carrier-to-signal power ratio (CSPR) enhancement by self-seeded stimulated Brillouin scattering to improve the performance of Kramers-Kronig (KK) detection for multichannel single-sideband (SSB) signals. By virtue of low-CSPR transmission and high-CSPR detection, our proposed scheme effectively advances system performance by reducing propagation-induced distortion while maintaining the minimum phase condition. We experimentally demonstrate the improvement in CSPR and bit error rate of 5×10-Gbaud 16-QAM SSB signals by applying the carrier recovery block after 80-km transmission. Under optimum pump power, the average factor improvement of all five channels is 3.0 dB. We also analyze the performances of different channels and the major limiting factor. The results verify that our scheme offers a promising solution to enhance SSB self-coherent KK detection in wavelength-division multiplexing systems.

摘要

我们通过自种子受激布里渊散射展示了载噪比(CSPR)增强,以改善多通道单边带(SSB)信号的克拉默斯-克勒尼希(KK)检测性能。借助低CSPR传输和高CSPR检测,我们提出的方案通过减少传播引起的失真,同时保持最小相位条件,有效地提升了系统性能。我们通过在80公里传输后应用载波恢复模块,实验证明了5×10-Gbaud 16-QAM SSB信号的CSPR和误码率得到了改善。在最佳泵浦功率下,所有五个通道的平均改善因子为3.0 dB。我们还分析了不同通道的性能和主要限制因素。结果验证了我们的方案为增强波分复用系统中的SSB自相干KK检测提供了一个有前景的解决方案。

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