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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Nature Portfolio
2017
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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) |
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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 |
work_keys_str_mv |
AT mjzhu edgecurrentsshunttheinsulatingbulkingappedgraphene AT avkretinin edgecurrentsshunttheinsulatingbulkingappedgraphene AT mdthompson edgecurrentsshunttheinsulatingbulkingappedgraphene AT dabandurin edgecurrentsshunttheinsulatingbulkingappedgraphene AT shu edgecurrentsshunttheinsulatingbulkingappedgraphene AT glyu edgecurrentsshunttheinsulatingbulkingappedgraphene AT jbirkbeck edgecurrentsshunttheinsulatingbulkingappedgraphene AT amishchenko edgecurrentsshunttheinsulatingbulkingappedgraphene AT ijveramarun edgecurrentsshunttheinsulatingbulkingappedgraphene AT kwatanabe edgecurrentsshunttheinsulatingbulkingappedgraphene AT ttaniguchi edgecurrentsshunttheinsulatingbulkingappedgraphene AT mpolini edgecurrentsshunttheinsulatingbulkingappedgraphene AT jrprance edgecurrentsshunttheinsulatingbulkingappedgraphene AT ksnovoselov edgecurrentsshunttheinsulatingbulkingappedgraphene AT akgeim edgecurrentsshunttheinsulatingbulkingappedgraphene AT mbenshalom edgecurrentsshunttheinsulatingbulkingappedgraphene |
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1718390230848897024 |