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Slow-light-enhanced gain in active photonic crystal waveguides

机译:有源光子晶体波导中的慢光增强增益

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Passive photonic crystals have been shown to exhibit a multitude of interesting phenomena, including slow-light propagation in line-defect waveguides. It was suggested that by incorporating an active material in the waveguide, slow light could be used to enhance the effective gain of the material, which would have interesting application prospects, for example enabling ultra-compact optical amplifiers for integration in photonic chips. Here we experimentally investigate the gain of a photonic crystal membrane structure with embedded quantum wells. We find that by solely changing the photonic crystal structural parameters, the maximum value of the gain coefficient can be increased compared with a ridge waveguide structure and at the same time the spectral position of the peak gain be controlled. The experimental results are in qualitative agreement with theory and show that gain values similar to those realized in state-of-the-art semiconductor optical amplifiers should be attainable in compact photonic integrated amplifiers.
机译:无源光子晶体已显示出许多有趣的现象,包括线缺陷波导中的慢速光传播。有人提出,通过在波导中掺入活性材料,可以使用慢光来增强材料的有效增益,这将具有有趣的应用前景,例如使超紧凑型光放大器能够集成到光子芯片中。在这里,我们通过实验研究具有嵌入式量子阱的光子晶体膜结构的增益。我们发现,仅改变光子晶体的结构参数,与脊形波导结构相比,就可以增加增益系数的最大值,并且同时可以控制峰值增益的光谱位置。实验结果与理论定性一致,表明在紧凑型光子集成放大器中应能获得与最先进的半导体光放大器相似的增益值。

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