Even–odd layer-dependent magnetotransport of high-mobility Q-valley electrons in transition metal disulfides

Few-layer transition metal dichalcogenides exhibit strong spin-valley entanglement and unconventional quantum Hall states, however their study has been limited by electron mobility. Here, the authors explore how quantum transport varies between even- and odd-layered systems of high mobility.

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Autores principales: Zefei Wu, Shuigang Xu, Huanhuan Lu, Armin Khamoshi, Gui-Bin Liu, Tianyi Han, Yingying Wu, Jiangxiazi Lin, Gen Long, Yuheng He, Yuan Cai, Yugui Yao, Fan Zhang, Ning Wang
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/b908251e237a46d286b4c8a841f640d3
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spelling oai:doaj.org-article:b908251e237a46d286b4c8a841f640d32021-12-02T14:40:13ZEven–odd layer-dependent magnetotransport of high-mobility Q-valley electrons in transition metal disulfides10.1038/ncomms129552041-1723https://doaj.org/article/b908251e237a46d286b4c8a841f640d32016-09-01T00:00:00Zhttps://doi.org/10.1038/ncomms12955https://doaj.org/toc/2041-1723Few-layer transition metal dichalcogenides exhibit strong spin-valley entanglement and unconventional quantum Hall states, however their study has been limited by electron mobility. Here, the authors explore how quantum transport varies between even- and odd-layered systems of high mobility.Zefei WuShuigang XuHuanhuan LuArmin KhamoshiGui-Bin LiuTianyi HanYingying WuJiangxiazi LinGen LongYuheng HeYuan CaiYugui YaoFan ZhangNing WangNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zefei Wu
Shuigang Xu
Huanhuan Lu
Armin Khamoshi
Gui-Bin Liu
Tianyi Han
Yingying Wu
Jiangxiazi Lin
Gen Long
Yuheng He
Yuan Cai
Yugui Yao
Fan Zhang
Ning Wang
Even–odd layer-dependent magnetotransport of high-mobility Q-valley electrons in transition metal disulfides
description Few-layer transition metal dichalcogenides exhibit strong spin-valley entanglement and unconventional quantum Hall states, however their study has been limited by electron mobility. Here, the authors explore how quantum transport varies between even- and odd-layered systems of high mobility.
format article
author Zefei Wu
Shuigang Xu
Huanhuan Lu
Armin Khamoshi
Gui-Bin Liu
Tianyi Han
Yingying Wu
Jiangxiazi Lin
Gen Long
Yuheng He
Yuan Cai
Yugui Yao
Fan Zhang
Ning Wang
author_facet Zefei Wu
Shuigang Xu
Huanhuan Lu
Armin Khamoshi
Gui-Bin Liu
Tianyi Han
Yingying Wu
Jiangxiazi Lin
Gen Long
Yuheng He
Yuan Cai
Yugui Yao
Fan Zhang
Ning Wang
author_sort Zefei Wu
title Even–odd layer-dependent magnetotransport of high-mobility Q-valley electrons in transition metal disulfides
title_short Even–odd layer-dependent magnetotransport of high-mobility Q-valley electrons in transition metal disulfides
title_full Even–odd layer-dependent magnetotransport of high-mobility Q-valley electrons in transition metal disulfides
title_fullStr Even–odd layer-dependent magnetotransport of high-mobility Q-valley electrons in transition metal disulfides
title_full_unstemmed Even–odd layer-dependent magnetotransport of high-mobility Q-valley electrons in transition metal disulfides
title_sort even–odd layer-dependent magnetotransport of high-mobility q-valley electrons in transition metal disulfides
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/b908251e237a46d286b4c8a841f640d3
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