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首页> 外文期刊>IEE Proceedings. Part J, Optoelectronics >Design of all-optical gain-clamped lumped Raman fibre amplifier for optimal dynamic performance
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Design of all-optical gain-clamped lumped Raman fibre amplifier for optimal dynamic performance

机译:全光增益钳位集总拉曼光纤放大器的设计可实现最佳动态性能

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摘要

The effect of lasing wavelength selection and optical feedback loop loss on the performance of an all-optical gain-clamped (AOGC) lumped Raman fibre amplifier (LRFA) is investigated both theoretically and experimentally. Suppression of surviving channel power fluctuations is selected as a criterion of the performance of the AOGC LRFA. A large-signal numerical model which incorporates time variation effects and the downstream propagation of signals, upstream propagation of pumps and downstream and upstream propagation of amplified spontaneous emission (ASE) spectral components has been used for the theoretical analysis. The LRFAs consist of 13 km of counter-directionally pumped dispersion compensating fibre (DCF). In the experiment, channel addition/removal is simulated by propagating optical power from two laser diodes through the AOGC LRFA. One of them is square-wave modulated at 500 Hz and the power fluctuations of the continuous wave signal of the other laser diode caused by cross-gain saturation effect in LRFAs are monitored.
机译:从理论和实验两方面研究了激光波长选择和光反馈环路损耗对全光钳位(AOGC)集总拉曼光纤放大器(LRFA)性能的影响。选择抑制存在的信道功率波动作为AOGC LRFA性能的标准。结合时间变化效应和信号的下游传播,泵的上游传播以及放大的自发发射(ASE)频谱分量的下游和​​上游传播的大信号数值模型已用于理论分析。 LRFA由13公里的反向泵浦色散补偿光纤(DCF)组成。在实验中,通过通过AOGC LRFA传播来自两个激光二极管的光功率来模拟信道添加/删除。其中一个是在500 Hz下调制的方波,并且监视了由LRFA中的交叉增益饱和效应引起的另一个激光二极管的连续波信号的功率波动。

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