Edge currents shunt the insulating bulk in gapped graphene

The absence of a bandgap in the electronic spectrum of graphene can be overcome by breaking its lattice symmetry. The authors show that the insulating state of gapped graphene is electrically shorted by narrow edge channels exhibiting high conductivity.

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Autores principales: M. J. Zhu, A. V. Kretinin, M. D. Thompson, D. A. Bandurin, S. Hu, G. L. Yu, J. Birkbeck, A. Mishchenko, I. J. Vera-Marun, K. Watanabe, T. Taniguchi, M. Polini, J. R. Prance, K. S. Novoselov, A. K. Geim, M. Ben Shalom
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/39a54966b9214a669b7c91aceac27d0b
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spelling oai:doaj.org-article:39a54966b9214a669b7c91aceac27d0b2021-12-02T14:40:33ZEdge currents shunt the insulating bulk in gapped graphene10.1038/ncomms145522041-1723https://doaj.org/article/39a54966b9214a669b7c91aceac27d0b2017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14552https://doaj.org/toc/2041-1723The absence of a bandgap in the electronic spectrum of graphene can be overcome by breaking its lattice symmetry. The authors show that the insulating state of gapped graphene is electrically shorted by narrow edge channels exhibiting high conductivity.M. J. ZhuA. V. KretininM. D. ThompsonD. A. BandurinS. HuG. L. YuJ. BirkbeckA. MishchenkoI. J. Vera-MarunK. WatanabeT. TaniguchiM. PoliniJ. R. PranceK. S. NovoselovA. K. GeimM. Ben ShalomNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-6 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. J. Zhu
A. V. Kretinin
M. D. Thompson
D. A. Bandurin
S. Hu
G. L. Yu
J. Birkbeck
A. Mishchenko
I. J. Vera-Marun
K. Watanabe
T. Taniguchi
M. Polini
J. R. Prance
K. S. Novoselov
A. K. Geim
M. Ben Shalom
Edge currents shunt the insulating bulk in gapped graphene
description The absence of a bandgap in the electronic spectrum of graphene can be overcome by breaking its lattice symmetry. The authors show that the insulating state of gapped graphene is electrically shorted by narrow edge channels exhibiting high conductivity.
format article
author M. J. Zhu
A. V. Kretinin
M. D. Thompson
D. A. Bandurin
S. Hu
G. L. Yu
J. Birkbeck
A. Mishchenko
I. J. Vera-Marun
K. Watanabe
T. Taniguchi
M. Polini
J. R. Prance
K. S. Novoselov
A. K. Geim
M. Ben Shalom
author_facet M. J. Zhu
A. V. Kretinin
M. D. Thompson
D. A. Bandurin
S. Hu
G. L. Yu
J. Birkbeck
A. Mishchenko
I. J. Vera-Marun
K. Watanabe
T. Taniguchi
M. Polini
J. R. Prance
K. S. Novoselov
A. K. Geim
M. Ben Shalom
author_sort M. J. Zhu
title Edge currents shunt the insulating bulk in gapped graphene
title_short Edge currents shunt the insulating bulk in gapped graphene
title_full Edge currents shunt the insulating bulk in gapped graphene
title_fullStr Edge currents shunt the insulating bulk in gapped graphene
title_full_unstemmed Edge currents shunt the insulating bulk in gapped graphene
title_sort edge currents shunt the insulating bulk in gapped graphene
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/39a54966b9214a669b7c91aceac27d0b
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