Observation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2M-WS2

Topological superconductors are potentially important for future quantum computation, but they are very rare in nature. Here, the authors observe topological surface states acquiring a nodeless superconducting gap with similar magnitude as that of the bulk states in 2M-WS2, suggesting an intrinsic t...

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Autores principales: Y. W. Li, H. J. Zheng, Y. Q. Fang, D. Q. Zhang, Y. J. Chen, C. Chen, A. J. Liang, W. J. Shi, D. Pei, L. X. Xu, S. Liu, J. Pan, D. H. Lu, M. Hashimoto, A. Barinov, S. W. Jung, C. Cacho, M. X. Wang, Y. He, L. Fu, H. J. Zhang, F. Q. Huang, L. X. Yang, Z. K. Liu, Y. L. Chen
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/7eeb2d06fc054663bfd82d901f8a304e
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spelling oai:doaj.org-article:7eeb2d06fc054663bfd82d901f8a304e2021-12-02T14:58:43ZObservation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2M-WS210.1038/s41467-021-23076-12041-1723https://doaj.org/article/7eeb2d06fc054663bfd82d901f8a304e2021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23076-1https://doaj.org/toc/2041-1723Topological superconductors are potentially important for future quantum computation, but they are very rare in nature. Here, the authors observe topological surface states acquiring a nodeless superconducting gap with similar magnitude as that of the bulk states in 2M-WS2, suggesting an intrinsic topological superconductor.Y. W. LiH. J. ZhengY. Q. FangD. Q. ZhangY. J. ChenC. ChenA. J. LiangW. J. ShiD. PeiL. X. XuS. LiuJ. PanD. H. LuM. HashimotoA. BarinovS. W. JungC. CachoM. X. WangY. HeL. FuH. J. ZhangF. Q. HuangL. X. YangZ. K. LiuY. L. ChenNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Y. W. Li
H. J. Zheng
Y. Q. Fang
D. Q. Zhang
Y. J. Chen
C. Chen
A. J. Liang
W. J. Shi
D. Pei
L. X. Xu
S. Liu
J. Pan
D. H. Lu
M. Hashimoto
A. Barinov
S. W. Jung
C. Cacho
M. X. Wang
Y. He
L. Fu
H. J. Zhang
F. Q. Huang
L. X. Yang
Z. K. Liu
Y. L. Chen
Observation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2M-WS2
description Topological superconductors are potentially important for future quantum computation, but they are very rare in nature. Here, the authors observe topological surface states acquiring a nodeless superconducting gap with similar magnitude as that of the bulk states in 2M-WS2, suggesting an intrinsic topological superconductor.
format article
author Y. W. Li
H. J. Zheng
Y. Q. Fang
D. Q. Zhang
Y. J. Chen
C. Chen
A. J. Liang
W. J. Shi
D. Pei
L. X. Xu
S. Liu
J. Pan
D. H. Lu
M. Hashimoto
A. Barinov
S. W. Jung
C. Cacho
M. X. Wang
Y. He
L. Fu
H. J. Zhang
F. Q. Huang
L. X. Yang
Z. K. Liu
Y. L. Chen
author_facet Y. W. Li
H. J. Zheng
Y. Q. Fang
D. Q. Zhang
Y. J. Chen
C. Chen
A. J. Liang
W. J. Shi
D. Pei
L. X. Xu
S. Liu
J. Pan
D. H. Lu
M. Hashimoto
A. Barinov
S. W. Jung
C. Cacho
M. X. Wang
Y. He
L. Fu
H. J. Zhang
F. Q. Huang
L. X. Yang
Z. K. Liu
Y. L. Chen
author_sort Y. W. Li
title Observation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2M-WS2
title_short Observation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2M-WS2
title_full Observation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2M-WS2
title_fullStr Observation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2M-WS2
title_full_unstemmed Observation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2M-WS2
title_sort observation of topological superconductivity in a stoichiometric transition metal dichalcogenide 2m-ws2
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/7eeb2d06fc054663bfd82d901f8a304e
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