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Study of the Gordon-Mollenauer Effect and of the Optical-Phase-Conjugation Compensation Method in Phase-Modulated Optical Communication Systems

机译:相调制光通信系统中的戈登-莫勒瑙尔效应和光相位共轭补偿方法的研究

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摘要

Optical phase-modulated systems are promising candidates for the development of ultrahigh-bit-rate transmission links, thanks to their high spectral efficiency and increased tolerance to fiber-optic nonlinearities. However, their implementation was considerably slowed down by theoretical studies, suggesting that the transmission performance can be severely hindered by nonlinear phase noise (the so-called Gordon-Mollenauer effect). The simulations presented here show that, in realistic systems (including nonlinearity, dispersion, and attenuation), Gordon-Mollenauer noise does not represent the main source of signal distortions. We demonstrate that all nonlinear impairments can be efficiently compensated by optical phase conjugation, independent of system characteristics. The combination of optical-phase-conjugation with phase-modulation formats could enable ultrahigh-transmission-capacity and easy embedded-link upgrading.
机译:光学相位调制系统具有超高的光谱效率和对光纤非线性的耐受性,因此有望成为发展超高比特率传输链路的候选技术。但是,理论研究大大降低了它们的实现,这表明传输性能会受到非线性相位噪声(所谓的Gordon-Mollenauer效应)的严重阻碍。此处提供的仿真表明,在实际系统(包括非线性,色散和衰减)中,戈登-莫勒瑙尔噪声并不代表信号失真的主要来源。我们证明,可以通过光学相位共轭有效地补偿所有非线性损伤,而与系统特性无关。将光相位共轭与相位调制格式相结合,可以实现超高传输能力,并易于嵌入式链路升级。

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