Moiré-modulated conductance of hexagonal boron nitride tunnel barriers

Summerfield, Alex

Description

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 periodic 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 localised sub-nanometre 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.

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Metrics

Dataset Index

0.6

FAIR Score

54%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

The University of Nottingham

Assigned Domain

Subfield

Atomic and Molecular Physics, and Optics

Field

Physics and Astronomy

Domain

Physical Sciences

Confidence Score

57%

Source

Scholar Data Model

Keywords

Atomic force microscopySuperlattices as materialsBoron nitrideGraphite compositesMolecular beam epitaxyAtomic force microscopy moire tunnel conductance hexagonal boron nitride molecular beam epitaxyPhysical sciences::Materials scienceQ Science::QC Physics::QC170 Atomic physics. Constitution and properties of matter

Normalization Factors

FT

57.69

CTw

1.00

MTw

1.00