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Nonlinear loss dynamics in a silicon slow-light photonic crystal waveguide

机译:硅慢光光子晶体波导中的非线性损耗动力学

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摘要

We directly investigate both experimentally and numerically the influence of optical nonlinear loss dynamics on a silicon waveguide based all-optical device. The dynamics of these nonlinear losses are explored through the analysis of optical limiting of an amplitude distorted 10 Gbit/s signal in a slow-light silicon photonic crystal waveguide. As the frequency of the distortion approaches the free-carrier recombination rate, free-carrier absorption reaches a steady state, leaving two-photon absorption the dominant dynamic nonlinear loss. Our results highlight the importance of engineering the free-carrier lifetime in silicon waveguides for high speed all-optical processing applications.
机译:我们直接在实验和数值上研究光学非线性损耗动力学对基于硅波导的全光学器件的影响。通过分析慢光硅光子晶体波导中振幅失真的10 Gbit / s信号的光学极限,可以探索这些非线性损耗的动力学特性。随着畸变频率接近自由载流子复合率,自由载流子吸收达到稳态,而两个光子吸收则成为主要的动态非线性损耗。我们的结果强调了为高速全光处理应用设计硅波导中自由载流子寿命的重要性。

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