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Generation of 1.024-Tb/s Nyquist-WDM phase-conjugated twin vector waves by a polarization-insensitive optical parametric amplifier for fiber-nonlinearity-tolerant transmission

机译:通过用于光纤非线性容忍传输的偏振不敏感光参量放大器产生1.024-Tb / s奈奎斯特-WDm相位共轭双向量波

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摘要

We experimentally demonstrate the generation of 1.024-Tb/s Nyquist-WDM phase-conjugated vector twin waves (PCTWs), consisting of eight 128-Gb/s polarization-division-multiplexed QPSK signals and their idlers, by a broadband polarization-insensitive fiber optic parametric amplifier. This novel all-optical signal processing approach to generate WDM-PCTWs enables a 2-fold reduction in the needed optical transmitters as compared to the conventional approach where each idler is generated by a dedicated transmitter. Digital coherent superposition of the twin waves at the receiver enables more than doubled reach in a dispersion-managed transmission link. We further study the impact of polarization-mode dispersion on the performance gain brought by the phase-conjugated twin waves, showing a gain of ∼3.8 dB in signal quality factors.
机译:我们通过实验证明了宽带偏振不敏感光纤产生的1.024-Tb / s Nyquist-WDM相位共轭矢量孪生波(PCTW),由八个128-Gb / s偏振分频多路复用QPSK信号及其闲置信号组成光学参量放大器。与其中每个惰轮由专用发射机生成的常规方法相比,这种生成WDM-PCTW的新颖的全光信号处理方法可使所需的光发射机减少2倍。接收器处双波的数字相干叠加使色散管理的传输链路的传输距离增加了一倍以上。我们进一步研究了偏振模色散对相位共轭双波带来的性能增益的影响,在信号质量因子中显示约3.8 dB的增益。

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