Switching of band inversion and topological surface states by charge density wave

Manipulating topological states by coupled electronic orders is promising for future dissipation-less electronic devices. Here, Mitsuishi et al. report selective vanishing of Dirac-type topological surface states by the formation of coupled charge density wave in a transition-metal dichalcogenide VT...

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Autores principales: N. Mitsuishi, Y. Sugita, M. S. Bahramy, M. Kamitani, T. Sonobe, M. Sakano, T. Shimojima, H. Takahashi, H. Sakai, K. Horiba, H. Kumigashira, K. Taguchi, K. Miyamoto, T. Okuda, S. Ishiwata, Y. Motome, K. Ishizaka
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/2fb9f77dc1584f9cb66f944e13024017
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spelling oai:doaj.org-article:2fb9f77dc1584f9cb66f944e130240172021-12-02T15:52:45ZSwitching of band inversion and topological surface states by charge density wave10.1038/s41467-020-16290-w2041-1723https://doaj.org/article/2fb9f77dc1584f9cb66f944e130240172020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16290-whttps://doaj.org/toc/2041-1723Manipulating topological states by coupled electronic orders is promising for future dissipation-less electronic devices. Here, Mitsuishi et al. report selective vanishing of Dirac-type topological surface states by the formation of coupled charge density wave in a transition-metal dichalcogenide VTe2.N. MitsuishiY. SugitaM. S. BahramyM. KamitaniT. SonobeM. SakanoT. ShimojimaH. TakahashiH. SakaiK. HoribaH. KumigashiraK. TaguchiK. MiyamotoT. OkudaS. IshiwataY. MotomeK. IshizakaNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
N. Mitsuishi
Y. Sugita
M. S. Bahramy
M. Kamitani
T. Sonobe
M. Sakano
T. Shimojima
H. Takahashi
H. Sakai
K. Horiba
H. Kumigashira
K. Taguchi
K. Miyamoto
T. Okuda
S. Ishiwata
Y. Motome
K. Ishizaka
Switching of band inversion and topological surface states by charge density wave
description Manipulating topological states by coupled electronic orders is promising for future dissipation-less electronic devices. Here, Mitsuishi et al. report selective vanishing of Dirac-type topological surface states by the formation of coupled charge density wave in a transition-metal dichalcogenide VTe2.
format article
author N. Mitsuishi
Y. Sugita
M. S. Bahramy
M. Kamitani
T. Sonobe
M. Sakano
T. Shimojima
H. Takahashi
H. Sakai
K. Horiba
H. Kumigashira
K. Taguchi
K. Miyamoto
T. Okuda
S. Ishiwata
Y. Motome
K. Ishizaka
author_facet N. Mitsuishi
Y. Sugita
M. S. Bahramy
M. Kamitani
T. Sonobe
M. Sakano
T. Shimojima
H. Takahashi
H. Sakai
K. Horiba
H. Kumigashira
K. Taguchi
K. Miyamoto
T. Okuda
S. Ishiwata
Y. Motome
K. Ishizaka
author_sort N. Mitsuishi
title Switching of band inversion and topological surface states by charge density wave
title_short Switching of band inversion and topological surface states by charge density wave
title_full Switching of band inversion and topological surface states by charge density wave
title_fullStr Switching of band inversion and topological surface states by charge density wave
title_full_unstemmed Switching of band inversion and topological surface states by charge density wave
title_sort switching of band inversion and topological surface states by charge density wave
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/2fb9f77dc1584f9cb66f944e13024017
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