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Tunable control of electromagnetically induced transparency analogue in a compact graphene-based waveguide

机译:紧凑型石墨烯基波导中电磁感应透明类似物的可调控制

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摘要

An easily-integrated compact graphene-based waveguide structure is proposed to achieve an analogue of electromagnetically induced transparency (EIT) effect at terahertz frequencies. The structure is composed of a graphene waveguide and two identical-shape graphene ribbons located parallel on the same side of the waveguide at different distances, in which the closer and the farther ribbons behave as the bright and the dark resonators, respectively. The EIT-like effect is caused by the destructive interference of the two resonators. By shifting the Fermi energy levels of ribbons, the transparency window can be dynamically tuned. The structure may offer another way for tunable integrated optical devices. (C) 2015 Optical Society of America
机译:提出了一种易于集成的紧凑型基于石墨烯的波导结构,以实现太赫兹频率下的电磁感应透明(EIT)效果的模拟。该结构由石墨烯波导和两个相同形状的石墨烯带平行放置在波导的同一侧上,且距离不同,其中近端带和远端带分别充当亮和暗谐振器。类似EIT的效果是由两个谐振器的相消干扰引起的。通过移动色带的费米能级,可以动态调整透明度窗口。该结构可以为可调谐集成光学设备提供另一种方式。 (C)2015年美国眼镜学会

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