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首页> 外文期刊>Journal of Lightwave Technology >Transmission Span Optimization in Fiber Systems With Cavity and Random Distributed Feedback Ultralong Raman Laser Amplification
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Transmission Span Optimization in Fiber Systems With Cavity and Random Distributed Feedback Ultralong Raman Laser Amplification

机译:具有腔和随机分布反馈超长拉曼激光放大的光纤系统的传输跨度优化

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摘要

Optimal design of a Raman-amplified periodic cell depends strongly on the constraints set by overall system requirements. The best possible tradeoff in terms of cost-effectiveness, nonlinearity, pumping efficiency, optical signal-to-noise ratio (OSNR), and tolerance to relative intensity noise transfer varies depending on characteristics, such as total transmission length, desirable number of spans or power budget requirements. Here, we perform a thorough experimental and theoretical study of the best performing configurations for second-order amplification over a broad range of applications, with span lengths ranging from 10 to 150 km. Results highlight the presence of different regimes in which different contributions to noise become dominant. We find that ultralong Raman fiber laser cells with high forward pumping are to be preferred in unrepeatered transmission applications, whereas in long-haul transmission a shorter cell based on random distributed feedback lasing can be a better option as it enables low relative intensity noise transfer with a higher output OSNR at the cost of a reduced pumping efficiency.
机译:拉曼放大周期电池的最佳设计在很大程度上取决于整个系统要求所设定的约束条件。在成本效益,非线性,泵浦效率,光信噪比(OSNR)以及对相对强度噪声传递的容忍度方面,可能的最佳权衡取决于特性,例如总传输长度,所需的跨度或电源预算要求。在这里,我们对跨度范围从10到150 km的各种应用中最佳性能的二阶放大配置进行了全面的实验和理论研究。结果突出表明存在不同的机制,其中对噪声的不同贡献占主导地位。我们发现具有高前向泵浦能力的超长拉曼光纤激光单元在无中继传输应用中将是首选,而在长距离传输中,基于随机分布反馈激光的较短单元可能是更好的选择,因为它可以实现较低的相对强度噪声传输以降低泵浦效率为代价的高输出OSNR。

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