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首页> 外文期刊>Materials >Tunable Coupled-Resonator-Induced Transparency in a Photonic Crystal System Based on a Multilayer-Insulator Graphene Stack
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Tunable Coupled-Resonator-Induced Transparency in a Photonic Crystal System Based on a Multilayer-Insulator Graphene Stack

机译:基于多层绝缘子石墨烯堆叠的光子晶体系统中可调耦合谐振器感应透明度

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摘要

We achieve the effective modulation of coupled-resonator-induced transparency (CRIT) in a photonic crystal system which consists of photonic crystal waveguide (PCW), defect cavities, and a multilayer graphene-insulator stack (MGIS). Simulation results show that the wavelength of transparency window can be effectively tuned through varying the chemical potential of graphene in MGIS. The peak value of the CRIT effect is closely related to the structural parameters of our proposed system. Tunable Multipeak CRIT is also realized in the four-resonator-coupled photonic crystal system by modulating the chemical potentials of MGISs in different cavity units. This system paves a novel way toward multichannel-selective filters, optical sensors, and nonlinear devices.
机译:我们在光子晶体系统中实现了对光子晶体(PCW),缺陷腔和多层石墨烯 - 绝缘体堆叠(MGIS)组成的光子晶体系统中的耦合谐振器感应透明度(CRIT)的有效调制。仿真结果表明,通过改变MGI中石墨烯的化学电位,可以有效地调整透明度窗的波长。 CRIT效应的峰值与我们所提出的系统的结构参数密切相关。通过调节不同腔体单元中的Mgiss的化学电位,还可以在四谐振器耦合的光子晶体系统中实现可调谐多跳柄。该系统铺设了朝向多通道选择滤波器,光学传感器和非线性设备的新方法。

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