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Implementation of all-optical switch based on nonlinear photonic crystal ring resonator with embedding metallic nanowires in the ring resonators

机译:基于非线性光子晶体环形谐振器的全光开关实现,在环形谐振器中嵌入金属纳米线

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摘要

A novel all-optical switch based on nonlinear photonic crystal ring resonator with embedding metallic nanowires in the ring resonators has been simulated and analyzed by the finite difference time domain method. We placed Ag-nanowires inside the ring resonator to reduce light intensity. The ring resonator has a low switching time of about 0.6 ps and low switching power equal to 36.5 mW/μm~2. Since the structure is of small size and ultra-fast time, it has the potentiality to be applied in optical integration circuits and nano-plasmonic information processing.
机译:利用时域有限差分法对新型的基于非线性光子晶体环形谐振器的金属纳米线嵌入环形谐振器的全光开关进行了仿真分析。我们将银纳米线放置在环形谐振器内以降低光强度。环形谐振器具有约0.6 ps的低开关时间和等于36.5 mW /μm〜2的低开关功率。由于该结构尺寸小且时间超快,因此具有在光集成电路和纳米等离子体信息处理中应用的潜力。

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