Infrared photodetection in graphene-based heterostructures: bolometric and thermoelectric effects at the tunneling barrier

IF 9.1 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Dmitry A. Mylnikov, Mikhail A. Kashchenko, Kirill N. Kapralov, Davit A. Ghazaryan, Evgenii E. Vdovin, Sergey V. Morozov, Kostya S. Novoselov, Denis A. Bandurin, Alexander I. Chernov, Dmitry A. Svintsov
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Abstract

Graphene/hBN/graphene tunnel devices offer promise as sensitive mid-infrared photodetectors but the microscopic origin underlying the photoresponse in them remains elusive. In this work, we investigated the photocurrent generation in graphene/hBN/graphene tunnel structures with localized defect states under mid-IR illumination. We demonstrate that the photocurrent in these devices is proportional to the second derivative of the tunnel current with respect to the bias voltage, peaking during tunneling through the hBN impurity level. We revealed that the origin of the photocurrent generation lies in the change of the tunneling probability upon radiation-induced electron heating in graphene layers, in agreement with the theoretical model that we developed. Finally, we show that at a finite bias voltage, the photocurrent is proportional to either of the graphene layers heating under the illumination, while at zero bias, it is proportional to the heating difference. Thus, the photocurrent in such devices can be used for accurate measurements of the electronic temperature, providing a convenient alternative to Johnson noise thermometry.

Abstract Image

石墨烯基异质结构中的红外光探测:隧道势垒上的测光和热电效应
石墨烯/高纯比/石墨烯隧道器件有望成为灵敏的中红外光探测器,但其光电响应的微观起源仍然难以捉摸。在这项工作中,我们研究了具有局部缺陷态的石墨烯/hBN/石墨烯隧道结构在中红外光照下产生的光电流。我们证明,这些器件中的光电流与隧道电流相对于偏置电压的二阶导数成正比,并在隧道穿过 hBN 杂质层时达到峰值。我们揭示了光电流产生的根源在于石墨烯层中辐射诱导电子加热时隧道概率的变化,这与我们建立的理论模型一致。最后,我们证明了在有限偏置电压下,光电流与照明下石墨烯层中任何一层的加热程度成正比,而在零偏置下,光电流与加热差成正比。因此,此类器件中的光电流可用于精确测量电子温度,为约翰逊噪声测温法提供了一种便捷的替代方法。
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来源期刊
npj 2D Materials and Applications
npj 2D Materials and Applications Engineering-Mechanics of Materials
CiteScore
14.50
自引率
2.10%
发文量
80
审稿时长
15 weeks
期刊介绍: npj 2D Materials and Applications publishes papers on the fundamental behavior, synthesis, properties and applications of existing and emerging 2D materials. By selecting papers with the potential for impact, the journal aims to facilitate the transfer of the research of 2D materials into wide-ranging applications.
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