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石墨烯纳米带中的声电电流。

Acoustoelectric Current in Graphene Nanoribbons.

机构信息

College of Engineering, Mathematics and Physical Sciences, University of Exeter, EX4 4QF, Exeter, UK.

出版信息

Sci Rep. 2017 May 11;7(1):1767. doi: 10.1038/s41598-017-01979-8.

Abstract

Surface acoustic waves (SAWs) propagating on piezoelectric substrates offer a convenient, contactless approach to probing the electronic properties of low-dimensional charge carrier systems such as graphene nanoribbons (GNRs). SAWs can also be used to transport and manipulate charge for applications such as metrology and quantum information. In this work, we investigate the acoustoelectric effect in GNRs, and show that an acoustoelectric current can be generated in GNRs with physical widths as small as 200 nm at room temperature. The positive current in the direction of the SAWs, which corresponds to the transportation of holes, exhibits a linear dependence on SAW intensity and frequency. This is consistent with the description of the interaction between the charge carriers in the GNRs and the piezoelectric fields associated with the SAWs being described by a relatively simple classical relaxation model. Somewhat counter-intuitively, as the GNR width is decreased, the measured acoustoelectric current increases. This is thought to be caused by an increase of the carrier mobility due to increased doping arising from damage to the GNR edges.

摘要

表面声波(SAWs)在压电衬底上传播,为探测石墨烯纳米带(GNRs)等低维载流子系统的电子性质提供了一种方便、非接触的方法。SAWs 也可用于传输和操纵电荷,例如用于计量学和量子信息等应用。在这项工作中,我们研究了 GNRs 中的声电效应,并表明在室温下,物理宽度小至 200nm 的 GNRs 中可以产生声电流。声电流在 SAWs 的方向上为正,对应于空穴的输运,其强度和频率呈线性关系。这与 GNR 中的电荷载流子与 SAWs 相关联的压电场之间的相互作用的描述一致,该相互作用可以通过相对简单的经典弛豫模型来描述。有些出人意料的是,随着 GNR 宽度的减小,测量到的声电流增加。这被认为是由于 GNR 边缘的损伤导致掺杂增加,从而提高了载流子迁移率所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28de/5431792/11e382f956b9/41598_2017_1979_Fig1_HTML.jpg

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