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High-quality multiple-working-wavelength photonic crystal diodes based on the Fano resonance of nonlinear defects

机译:基于非线性缺陷的Fano共振的高质量多工作波长光子晶体二极管

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摘要

All-optical photonic crystal diodes based on the Fano resonance of nonlinear defects are studied. The diodes can achieve nonreciprocal transmission ratios of 31.7 dB and 33.9 dB at working wavelengths of 1534.83 nm and 1536.02 nm, respectively. The function of two defects' coupling to the performance of unidirectional light transmission is also analyzed. When two Fano cavities are cascaded to form a two-branch-channel diode, unidirectional light propagation at 1536.88, 1538.76, 1612.80, and 1616.78 nm wavelengths is achieved along two opposite forward directions, and the nonreciprocal transmission ratios are 36.5, 30.3, 23.9, and 19.6 dB, respectively. (C) 2020 Optical Society of America
机译:研究了基于Fano共振的非线性缺陷的全光学光子晶体二极管。 二极管分别可以在1534.83nm和1536.02nm的工作波长下实现31.7dB和33.9 dB的非透镜透射比。 还分析了两个缺陷与单向光传输性能的耦合的函数。 当两个扇形腔级联以形成双分支通道二极管时,沿两个相反的向前方向实现了1536.88,1538.76,1612.80和1616.78nm波长的单向光传播,非探测器比率为36.5,30.3,23.9, 和19.6 dB分别。 (c)2020美国光学学会

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    《Applied optics》 |2020年第14期|共8页
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