首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Dynamically tunable implementation of electromagnetically induced transparency based on bright and dark modes coupling graphene-nanostrips
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Dynamically tunable implementation of electromagnetically induced transparency based on bright and dark modes coupling graphene-nanostrips

机译:基于明亮和深色模式耦合石墨纳斯纳秒的电磁诱导透明度动态调谐实现

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摘要

In this paper, we numerically demonstrated a dynamically tunable implementation of electromagnetically induced transparency (EIT) based on bright and dark modes coupling graphene-nanostrips. Two graphene-nanostrips are connected respectively with two metallic pads, which make Fermi energies of proposed two graphene-nanostrips can be independently tuned by changing bias voltage between the metallic pads and substrate, and the EIT window can be easily controlled than metallic and separated graphene structures. As a result, the EIT window has a significant tunable capacity, and the most remarkable characteristic of proposed structure is to achieve distinct transparency windows respectively at two perpendicular directions of polarization, which is not obtained or analyzed in the previous similar structures, and these merits exhibit the potential applications in sensor device.
机译:在本文中,我们基于耦合石墨烯 - 纳秒的明亮和暗模式来数值表现出电磁诱导的透明度(EIT)的动态可调的实现。 两个石墨烯 - 纳米纳秒分别与两个金属焊盘连接,这使得提出的两个石墨烯-nanoStrips的Fermi能量可以通过改变金属焊盘和基板之间的偏置电压来独立调整,并且可以容易地控制比金属和分离的石墨烯容易地控制EIT窗口 结构。 结果,EIT窗口具有显着的可调谐容量,并且所提出的结构的最显着特性是分别在两个垂直的极化方向上实现不同的透明度窗口,这在前一个类似的结构中未获得或分析,以及这些优点 在传感器装置中展示潜在的应用。

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