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Ultrahigh Count Coherent WDM Channels Transmission Using Optical Parametric Comb-Based Frequency Synthesizer

机译:使用基于光参梳的频率合成器传输超高计数相干WDM信道

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摘要

A novel optical frequency synthesizer capable of generating a multitude of narrow linewidth oscillations, fully compatible with high-speed fiber-optic transmission requirements, is presented. The new device is based on an ultra-dense and wideband parametric comb capable of generating more than 1800 spectral lines with 6.25 GHz spacing within 100 nm (C + L band) of optical bandwidth and 3 dB spectral flatness. The parametric comb generation relies on the highly efficient nonlinear interaction of the ultra-short and high peak power pulse train in the precisely controlled dispersive medium. The generated comb source is used for coherent transmission of 1520 Nyquist ultra-dense wavelength division multiplexed channels in a flex-grid compatible optical access network architecture, offering up to 30 Gb/s per user over a 50 km of standard single mode fiber with estimated aggregate capacity of 32 Tb/s. The line spacing tunablity and one-to-multiple coherent cloning capability make the proposed multicarrier generator a strong contender fully capable of replacing thousands of discrete lasers in optical data communication systems.
机译:提出了一种新型的光学频率合成器,它能够产生多种窄线宽振荡,并且与高速光纤传输要求完全兼容。新器件基于超密集宽带参数梳状结构,能够产生1800条光谱线,在100 nm(C + L波段)的光带宽内具有6.25 GHz的间隔,光谱带宽为3 dB。参数梳的产生依赖于在精确控制的分散介质中超短和高峰值功率脉冲序列的高效非线性相互作用。生成的梳状源用于在兼容柔性网格的光接入网络体系结构中相干传输1520 Nyquist超密集波分复用信道,在50 km的标准单模光纤上,每位用户可提供高达30 Gb / s的速度,估计总容量为32 Tb / s。线间距的可调谐性和一对多的相干克隆能力使所提出的多载波发生器成为强有力的竞争者,完全有能力取代光学数据通信系统中的数千个离散激光器。

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