Scale-invariant large nonlocality in polycrystalline graphene

Author

Ribeiro, Mário

Power, Stephen R.

Roche, Stephan

Hueso, Luis E.

Casanova, Fèlix

Publication date

2017

Abstract

Altres ajuts: programa CERCA.


The observation of large nonlocal resistances near the Dirac point in graphene has been related to a variety of intrinsic Hall effects, where the spin or valley degrees of freedom are controlled by symmetry breaking mechanisms. Engineering strong spin or valley Hall signals on scalable graphene devices could stimulate further practical developments of spin- and valleytronics. Here we report on scale-invariant nonlocal transport in large-scale chemical vapor deposition graphene under an applied external magnetic field. Contrary to previously reported Zeeman spin Hall effect, our results are explained by field-induced spin-filtered edge states whose sensitivity to grain boundaries manifests in the nonlocal resistance. This phenomenon, related to the emergence of the quantum Hall regime, persists up to the millimeter scale, showing that polycrystalline morphology can be imprinted in nonlocal transport. This suggests that topological Hall effects in large-scale graphene materials are highly sensitive to the underlying structural morphology, limiting practical realizations.

Document Type

Article

Language

English

Subjects and keywords

Electronic and spintronic devices; Electronic properties and devices; Quantum Hall; Spintronics

Publisher

 

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Nature communications ; Vol. 8, issue 1 (Jan. 2017), art. 2198

Rights

open access

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