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Wave-Packet Dynamics Study of the Transport Characteristics of Perforated Bilayer Graphene Nanoribbons
JETP Letters ( IF 1.3 ) Pub Date : 2020-11-20 , DOI: 10.1134/s0021364020170063
V. A. Demin , D. G. Kvashnin , P. Vancsó , G. I. Márk , L. A. Chernozatonskii

The electrical conduction characteristics of perforated bilayer graphene nanoribbons are studied by the wave-packet dynamics method. The transport characteristics for typical examples of such nanostructures, which depend on the specific features of the contacts between the electrodes and the nanostructure under study, are estimated within a theoretical model. The effect of nanopores on the propagation of a wave packet across bilayer nanoribbons having two different configurations is revealed. These studies may become the first necessary prerequisite for the possible applications of such objects as components of electronic and optoelectronic circuits.



中文翻译:

多孔双层石墨烯纳米带输运特性的波包动力学研究

通过波包动力学方法研究了多孔双层石墨烯纳米带的导电特性。在理论模型内估算了此类纳米结构的典型实例的传输特性,该特性取决于电极与所研究的纳米结构之间接触的具体特征。揭示了纳米孔对波包跨过具有两种不同构型的双层纳米带的传播的影响。这些研究可能成为可能应用诸如电子和光电电路组件之类的对象的第一个必要先决条件。

更新日期:2020-11-21
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