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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Transmission property of one-dimensional multilayer graphene-dielectric stack
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Transmission property of one-dimensional multilayer graphene-dielectric stack

机译:一维多层石墨烯-电介质叠层的传输特性

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摘要

The transmission property and field distribution of one-dimensional multilayer containing graphene sheets separated by dielectric slabs are theoretically studied in terahertz. It is shown that the multilayer graphene-dielectric stack supports a series of passband and stopband whose number increases with the dielectric thickness. The field distributions show that the transmission resonances in the passband are attributed to Fabry-Perot resonances in the dielectric layer and the node numbers that appear in the field distribution in each graphene-dielectric-graphene cavity can be quantitatively given. It is also noticed that these resonances lie within a certain characteristic frequency bands which are independent of the number of unit cells making up the structure. The low frequency edge of the passband is highly tunable by the Fermi energy and the layer number of graphene sheets, while the high frequency edge is just determined by the dielectric slab. When an impurity is introduced, a defect mode can appear inside the stopband and it can be adjusted by Fermi energy of graphene controlled via a gate voltage. (C) 2015 Elsevier GmbH. All rights reserved.
机译:理论上以太赫兹研究了由介电平板分隔的一维多层含石墨烯片的透射性质和场分布。结果表明,多层石墨烯-电介质堆叠体支持一系列通带和阻带,其数量随介电层厚度的增加而增加。场分布表明,通带中的传输共振归因于介电层中的Fabry-Perot共振,并且可以定量给出每个石墨烯-介电石墨烯腔中场分布中出现的节点数。还应注意,这些共振位于某些特征频带内,该特征频带与构成该结构的单位单元的数量无关。通带的低频边缘可通过费米能量和石墨烯片的层数进行高度可调,而高频边缘仅由介电平板确定。当引入杂质时,缺陷模式会出现在阻带内部,并且可以通过通过栅极电压控制的石墨烯的费米能来调整缺陷模式。 (C)2015 Elsevier GmbH。版权所有。

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