JOURNAL ARTICLE

Magnetotransport in heterostructures of transition metal dichalcogenides and graphene

Völkl, TobiasRockinger, TobiasDrienovsky, MartinWatanabe, KenjiTaniguchi, TakashiWeiss, DieterEroms, Jonathan

Year: 2017 Journal:   University of Regensburg Publication Server (University of Regensburg)   Publisher: University of Regensburg

Abstract

We use a van der Waals pickup technique to fabricate different heterostructures containing WSe2(WS2) and graphene. The heterostructures were structured by plasma etching, contacted by one-dimensional edge contacts, and a top gate was deposited. For graphene/WSe2/SiO2 samples we observe mobilities of similar to 12 000 cm(2) V-1 s(-1). Magnetic-field-dependent resistance measurements on these samples show a peak in the conductivity at low magnetic fields. This dip is attributed to the weak antilocalization (WAL) effect, stemming from spin-orbit coupling. Samples where graphene is encapsulated between WSe2(WS2) and hexagonal boron nitride show a much higher mobility of up to similar to 120 000 cm(2) V-1 s(-1). However, in these samples noWAL peak can be observed. We attribute this to a transition from the diffusive to the quasiballistic regime. At low magnetic fields a resistance peak appears, which we ascribe to a size effect due to boundary scattering. Shubnikov-de Haas oscillations in fully encapsulated samples show all integer filling factors due to complete lifting of the spin and valley degeneracies.

Keywords:
Heterojunction Graphene Transition metal Hexagonal boron nitride Conductivity Enhanced Data Rates for GSM Evolution Weak localization Magnetoresistance Ferromagnetism

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Topics

2D Materials and Applications
Physical Sciences →  Materials Science →  Materials Chemistry
Topological Materials and Phenomena
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Graphene research and applications
Physical Sciences →  Materials Science →  Materials Chemistry
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