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Plasmonic bandpass filter based on graphene nanoribbon

机译:基于石墨烯纳米带的等离子带通滤波器

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摘要

A plasmonic bandpass filter based on graphene is proposed and numerically investigated using the finite-difference time-domain method. The proposed filter has a very simple structure, including two graphene nanoribbon waveguides laterally coupled to a graphene ribbon resonator. The transmission efficiency can be tuned by altering the coupling distance between the ribbons. At the same time, the variation of the transmission spectra is investigated by tuning the size of the graphene resonant ribbon. Notably, due to the unique electronic tunability of graphene, the transmission spectra can be freely tuned in a broad frequency range by choosing the chemical potential, which exhibits more flexible tunability than that used in conventional metallic devices. Attributed to the standing wave distribution of different modes excited in the graphene resonant ribbon, the proposed filter can be used for the plasmonic device with the capability of band selection or power splitting by locating the output waveguide ports in the suitable positions. (C) 2015 Optical Society of America
机译:提出了一种基于石墨烯的等离子体带通滤波器,并采用时域有限差分法进行了数值研究。所提出的滤波器具有非常简单的结构,包括两个横向耦合到石墨烯带谐振器的石墨烯纳米带波导。可以通过改变色带之间的耦合距离来调节传输效率。同时,通过调节石墨烯共振带的尺寸来研究透射光谱的变化。值得注意的是,由于石墨烯具有独特的电子可调性,因此可以通过选择化学势在较宽的频率范围内自由调节透射光谱,与常规金属器件相比,化学势显示出更灵活的可调性。归因于在石墨烯谐振带中激发的不同模式的驻波分布,通过将输出波导端口放置在合适的位置,所提出的滤波器可以用于具有频带选择或功率分配能力的等离子装置。 (C)2015年美国眼镜学会

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