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Rigorous and optimized few-mode erbium-doped fiber amplifier design by using topology optimization and genetic algorithms

机译:通过拓扑优化和遗传算法进行严格优化的少模掺-光纤放大器设计

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摘要

We develop a rigorous procedure for the optimum design of few-mode erbium (Er)-doped fiber amplifiers, which is tackled as a multiobjective optimization problem, in an approach based on the combination of the topology optimization and genetic algorithm techniques. We demonstrated that the usual ring-like doping distributions are necessarily the best choices only if the pump intensity shows no azimuthal dependence. Additionally, in general, the optimum doping distribution will be a function of the signal and pump azimuthal mode numbers. For the particular case of the LP_(11) pump, we also provide a triple-ring Er-doping profile that maximizes modal equalization for seven-group modes over the whole C-band, the highest modal count proposed in the literature so far.
机译:我们基于拓扑优化和遗传算法技术相结合的方法,开发了一种严格的程序,用于优化掺有少量模式掺E(Er)的光纤放大器的设计,将其作为多目标优化问题解决。我们证明,仅当泵浦强度不显示方位角依赖性时,通常的环形掺杂分布才是最佳选择。另外,通常,最佳掺杂分布将取决于信号和泵浦方位角模式编号。对于LP_(11)泵的特殊情况,我们还提供了三环Er掺杂曲线,该曲线在整个C波段上使七组模式的模式均衡最大化,这是迄今为止文献中提出的最高模式计数。

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