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Effect of second order signal-noise interactions in nonlinearity compensated optical transmission systems

机译:二阶信噪相互作用在非线性补偿光传输系统中的作用

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摘要

In this Letter, we theoretically and numerically analyze the performance of coherent optical transmission systems that deploy inline or transceiver based nonlinearity compensation techniques. For systems where signal-signal nonlinear interactions are fully compensated, we find that beyond the performance peak the signal-to-noise ratio degradation has a slope of 3 dBSNR/dBPower suggesting a quartic rather than quadratic dependence on signal power. This is directly related to the fact that signals in a given span will interact not only with linear amplified spontaneous emission noise, but also with the nonlinear four-wave mixing products generated from signal-noise interaction in previous (hitherto) uncompensated spans. The performance of optical systems employing different nonlinearity compensation schemes were numerically simulated and compared against analytical predictions, showing a good agreement within a 0.4 dB margin of error.
机译:在这封信中,我们在理论上和数值上分析了部署基于在线或收发器的非线性补偿技术的相干光传输系统的性能。对于完全补偿了信号-信号非线性相互作用的系统,我们发现,在性能峰值之外,信噪比下降的斜率为3 dBSNR / dBPower,表明对信号功率的二次而不是二次依赖性。这与以下事实直接相关:给定跨度中的信号不仅会与线性放大的自发发射噪声相互作用,而且还会与先前(迄今为止)未补偿跨度中由信号噪声相互作用生成的非线性四波混合产物相互作用。对采用不同非线性补偿方案的光学系统的性能进行了数值模拟,并与分析预测进行了比较,显示出在0.4 dB误差范围内的良好一致性。

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