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六方氮化硼隧道势垒的调制莫尔电导。

Moiré-Modulated Conductance of Hexagonal Boron Nitride Tunnel Barriers.

机构信息

School of Physics and Astronomy , University of Nottingham , Nottingham , NG7 2RD , United Kingdom.

National Institute for Materials Science , 1-1 Namiki , Tsukuba , Ibraki 305-0044 , Japan.

出版信息

Nano Lett. 2018 Jul 11;18(7):4241-4246. doi: 10.1021/acs.nanolett.8b01223. Epub 2018 Jun 27.

Abstract

Monolayer hexagonal boron nitride (hBN) tunnel barriers investigated using conductive atomic force microscopy reveal moiré patterns in the spatial maps of their tunnel conductance consistent with the formation of a moiré superlattice between the hBN and an underlying highly ordered pyrolytic graphite (HOPG) substrate. This variation is attributed to a periodc modulation of the local density of states and occurs for both exfoliated hBN barriers and epitaxially grown layers. The epitaxial barriers also exhibit enhanced conductance at localized subnanometer regions which are attributed to exposure of the substrate to a nitrogen plasma source during the high temperature growth process. Our results show clearly a spatial periodicity of tunnel current due to the formation of a moiré superlattice and we argue that this can provide a mechanism for elastic scattering of charge carriers for similar interfaces embedded in graphene/hBN resonant tunnel diodes.

摘要

使用导电原子力显微镜研究的单层六方氮化硼 (hBN) 隧道势垒在其隧道电导的空间图谱中显示出莫尔图案,这与 hBN 和底层高度有序的热解石墨 (HOPG) 衬底之间形成莫尔超晶格一致。这种变化归因于局部态密度的周期性调制,并且对于剥离的 hBN 势垒和外延生长层都发生。外延势垒也在局部亚纳米区域表现出增强的电导,这归因于在高温生长过程中衬底暴露于氮等离子体源。我们的结果清楚地显示了由于莫尔超晶格的形成而导致的隧道电流的空间周期性,我们认为这可以为类似的嵌入在石墨烯/hBN 共振隧道二极管中的界面中的电荷载流子的弹性散射提供一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39c6/6095635/74a6a32be1a5/nl-2018-01223u_0001.jpg

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