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Laser Frequency Noise in Coherent Optical Systems: Spectral Regimes and Impairments

机译:相干光学系统中的激光频率噪声:光谱范围和损害

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摘要

Coherent communication networks are based on the ability to use multiple dimensions of the lightwave together with electrical domain compensation of transmission impairments. Electrical-domain dispersion compensation (EDC) provides many advantages such as network flexibility and enhanced fiber nonlinearity tolerance, but makes the system more susceptible to laser frequency noise (FN), e.g. to the local oscillator FN in systems with post-reception EDC. Although this problem has been extensively studied, statistically, for links assuming lasers with white-FN, many questions remain unanswered. Particularly, the influence of a realistic non-white FN-spectrum due to e.g., the presence of 1/f-flicker and carrier induced noise remains elusive and a statistical analysis becomes insufficient. Here we provide an experimentally validated theory for coherent optical links with lasers having general non-white FN-spectrum and EDC. The fundamental reason of the increased susceptibility is shown to be FN-induced symbol displacement that causes timing jitter and/or inter/intra symbol interference. We establish that different regimes of the laser FN-spectrum cause a different set of impairments. The influence of the impairments due to some regimes can be reduced by optimizing the corresponding mitigation algorithms, while other regimes cause irretrievable impairments. Theoretical boundaries of these regimes and corresponding criteria applicable to system/laser design are provided.
机译:相干通信网络基于使用光波的多个维度以及传输损伤的电域补偿的能力。电域色散补偿(EDC)具有许多优点,例如网络灵活性和增强的光纤非线性容限,但使系统更容易受到激光频率噪声(FN)的影响,例如在具有接收后EDC的系统中连接到本地振荡器FN。尽管已经对这个问题进行了广泛的统计研究,但对于使用白色FN激光器的链路,仍存在许多问题尚未解答。特别地,由于例如1 / f闪烁和载流子引起的噪声的存在,现实的非白色FN光谱的影响仍然难以捉摸,并且统计分析变得不足。在这里,我们为具有一般非白色FN光谱和EDC的激光器的相干光链路提供了经过实验验证的理论。易感性增加的根本原因显示为FN引起的符号位移,它导致时序抖动和/或符号间/符号间干扰。我们确定,激光FN光谱的不同机制会导致不同的损伤。可以通过优化相应的缓解算法来减少由于某些情况导致的损害的影响,而其他情况则导致无法挽回的损害。提供了这些制度的理论界限和适用于系统/激光器设计的相应标准。

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