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石墨烯中的双周期超晶格与透明态

Biperiodic superlattices and transparent states in graphene.

作者信息

Alvarado-Goytia J J, Rodríguez-González R, Martínez-Orozco J C, Rodríguez-Vargas I

机构信息

Unidad Académica de Física, Universidad Autónoma de Zacatecas, Calzada Solidaridad Esquina con Paseo La Bufa S/N, 98060, Zacatecas, ZAC, Mexico.

Unidad Académica de Ciencia y Tecnología de la Luz y la Materia, Universidad Autónoma de Zacatecas, Carretera Zacatecas-Guadalajara Km. 6, Ejido La Escondida, 98160, Zacatecas, ZAC, Mexico.

出版信息

Sci Rep. 2022 Jan 17;12(1):832. doi: 10.1038/s41598-021-04690-x.

Abstract

The transmission and transport properties of biperiodic graphene superlattices are studied theoretically. Special attention is paid to the so-called transparent states of biperiodic superlattices. A Dirac-like Hamiltonian is used to describe the charge carriers in graphene. The transfer matrix method and the Landauer-Büttiker formalism are implemented to obtain the transmittance and conductance, respectively. Similar results to those reported for Schrödinger electrons are obtained. However, in the case of Dirac electrons the splitted bands and the transparent states associated to the biperiodicity depend strongly on the angle of incidence as well as the character of the charge carriers. In fact, the dynamic of the splitted bands and transparent states is inverted for holes. The origin of transparent states is unveiled by obtaining an analytic expression for the transmittance. It is found that resonant transmission through single and double barriers gives rise to transparent states. Regarding the transport properties, it is possible to identify the fundamental changes caused by the biperiodicity. In particular, it is found a splitting, shifting, and diminishment of the conductance peaks with respect to the case of regular periodicity. This opens the door to corroborate experimentally the fundamental characteristics of biperiodic gated graphene superlattices through transport measurements.

摘要

从理论上研究了双周期石墨烯超晶格的传输和输运特性。特别关注双周期超晶格的所谓透明态。使用类狄拉克哈密顿量来描述石墨烯中的电荷载流子。分别采用转移矩阵法和朗道尔 - 布蒂克尔形式来获得透射率和电导率。得到了与报道的薛定谔电子类似的结果。然而,对于狄拉克电子,与双周期性相关的分裂能带和透明态强烈依赖于入射角以及电荷载流子的特性。实际上,对于空穴,分裂能带和透明态的动态情况是相反的。通过获得透射率的解析表达式揭示了透明态的起源。发现通过单势垒和双势垒的共振传输会产生透明态。关于输运特性,可以确定由双周期性引起的基本变化。特别是,相对于规则周期性的情况,发现了电导峰的分裂、移动和减小。这为通过输运测量实验证实双周期栅控石墨烯超晶格的基本特性打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8507/8764099/de6758dc6886/41598_2021_4690_Fig1_HTML.jpg

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