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首页> 外文期刊>Journal of Modern Optics >An ultra-compact tunable Bragg reflector based on edge propagating plasmons in graphene nanoribbon
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An ultra-compact tunable Bragg reflector based on edge propagating plasmons in graphene nanoribbon

机译:基于边缘扩散等离子体的石墨烯纳米带超紧凑型可调布拉格反射器

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摘要

A mid-infrared planar Bragg reflector, which is based on the fundamental edge plasmonic mode in the nanoribbons is proposed and numerically demonstrated in this paper. The simulation results calculated with the three-dimensional (3D) finite element method reveal that it shows superb wide-band filtering characteristics in the mid-infrared frequencies, and the bandwidth of stopband in the reflector can be dynamically modulated by varying the chemical potentials of corresponding nanoribbon waveguides. In addition, its band properties on the ribbon width are also analyzed. This kind of Bragg reflector exhibits extreme compactness of lateral scales and wonderful light confinement in both the longitudinal and the lateral directions, which is expected to have significant applications in constructing 3D highly integrated optical networks for signal processing.
机译:提出并基于数值模拟了中红外平面布拉格反射器,该反射器基于纳米带的基本边缘等离子模式。使用三维(3D)有限元方法计算的仿真结果表明,它在中红外频率下显示了出色的宽带滤波特性,并且可以通过改变反射镜的化学势来动态调制反射器中的阻带带宽。相应的纳米带波导。另外,还分析了其在带宽度上的带特性。这种布拉格反射器在横向和横向上都表现出极高的紧凑性,并且在纵向和横向上都具有出色的光限制,这有望在构建用于信号处理的3D高度集成的光学网络中具有重要的应用。

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