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石墨烯Y型结中的栅极电势控制电流开关

Gate potential-controlled current switching in graphene Y-junctions.

作者信息

Araújo F R V, da Costa D R, Lima F N, Nascimento A C S, Pereira J M

机构信息

Instituto Federal do Piauí-Campus São Raimundo Nonato, 64670-000, São Raimundo Nonato, PI, Brazil.

Departamento de Física, Universidade Federal do Ceará, 60455-900, Fortaleza, CE, Brazil.

出版信息

J Phys Condens Matter. 2021 Jul 15;33(37). doi: 10.1088/1361-648X/ac0f2b.

Abstract

In this work we investigate the ballistic transport of electrons through three-terminal graphene-based devices. The system consists of a Y-shaped junction formed by three armchair-edged graphene nanoribbons with a rectangular gate potential applied to one of the output branches, whereby current control can be established by the controlling of the refractive index in graphene p-n junctions. Transport properties are obtained by using the Landauer-Büttiker formalism and the tight-binding model within the nearest-neighbor approximation, which allows the calculation of the conductance as function of the Fermi energy, the applied potential, and the system size, as well as the current density. The results demonstrate that the applied electric field can tune the current transmission between the input and two output leads and, consequently, the proposed system acts as a current switch.

摘要

在这项工作中,我们研究了电子通过基于石墨烯的三端器件的弹道输运。该系统由一个Y形结组成,它由三条扶手椅型边缘的石墨烯纳米带形成,在其中一个输出分支上施加矩形栅极电势,从而可以通过控制石墨烯p-n结中的折射率来实现电流控制。通过使用Landauer-Büttiker形式理论和最近邻近似下的紧束缚模型来获得输运性质,这允许计算作为费米能量、外加电势和系统尺寸以及电流密度函数的电导。结果表明,外加电场可以调节输入和两个输出端之间的电流传输,因此,所提出的系统可作为一个电流开关。

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