Spin–valley locking in the normal state of a transition-metal dichalcogenide superconductor

The origin of intertwined electronic orders in transition-metal dichalcogenides has long been debated. Here, Bawden et al. report that the normal state, from which these phases emerge, is unexpectedly spin-polarized, with spins locked to both valley and layer pseudospins.

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Autores principales: L. Bawden, S. P. Cooil, F. Mazzola, J. M. Riley, L. J. Collins-McIntyre, V. Sunko, K. W. B. Hunvik, M. Leandersson, C. M. Polley, T. Balasubramanian, T. K. Kim, M. Hoesch, J. W. Wells, G. Balakrishnan, M. S. Bahramy, P. D. C. King
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/1050eea6a87e4a8f8824e5fca8088926
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spelling oai:doaj.org-article:1050eea6a87e4a8f8824e5fca80889262021-12-02T17:32:51ZSpin–valley locking in the normal state of a transition-metal dichalcogenide superconductor10.1038/ncomms117112041-1723https://doaj.org/article/1050eea6a87e4a8f8824e5fca80889262016-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms11711https://doaj.org/toc/2041-1723The origin of intertwined electronic orders in transition-metal dichalcogenides has long been debated. Here, Bawden et al. report that the normal state, from which these phases emerge, is unexpectedly spin-polarized, with spins locked to both valley and layer pseudospins.L. BawdenS. P. CooilF. MazzolaJ. M. RileyL. J. Collins-McIntyreV. SunkoK. W. B. HunvikM. LeanderssonC. M. PolleyT. BalasubramanianT. K. KimM. HoeschJ. W. WellsG. BalakrishnanM. S. BahramyP. D. C. KingNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-6 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
L. Bawden
S. P. Cooil
F. Mazzola
J. M. Riley
L. J. Collins-McIntyre
V. Sunko
K. W. B. Hunvik
M. Leandersson
C. M. Polley
T. Balasubramanian
T. K. Kim
M. Hoesch
J. W. Wells
G. Balakrishnan
M. S. Bahramy
P. D. C. King
Spin–valley locking in the normal state of a transition-metal dichalcogenide superconductor
description The origin of intertwined electronic orders in transition-metal dichalcogenides has long been debated. Here, Bawden et al. report that the normal state, from which these phases emerge, is unexpectedly spin-polarized, with spins locked to both valley and layer pseudospins.
format article
author L. Bawden
S. P. Cooil
F. Mazzola
J. M. Riley
L. J. Collins-McIntyre
V. Sunko
K. W. B. Hunvik
M. Leandersson
C. M. Polley
T. Balasubramanian
T. K. Kim
M. Hoesch
J. W. Wells
G. Balakrishnan
M. S. Bahramy
P. D. C. King
author_facet L. Bawden
S. P. Cooil
F. Mazzola
J. M. Riley
L. J. Collins-McIntyre
V. Sunko
K. W. B. Hunvik
M. Leandersson
C. M. Polley
T. Balasubramanian
T. K. Kim
M. Hoesch
J. W. Wells
G. Balakrishnan
M. S. Bahramy
P. D. C. King
author_sort L. Bawden
title Spin–valley locking in the normal state of a transition-metal dichalcogenide superconductor
title_short Spin–valley locking in the normal state of a transition-metal dichalcogenide superconductor
title_full Spin–valley locking in the normal state of a transition-metal dichalcogenide superconductor
title_fullStr Spin–valley locking in the normal state of a transition-metal dichalcogenide superconductor
title_full_unstemmed Spin–valley locking in the normal state of a transition-metal dichalcogenide superconductor
title_sort spin–valley locking in the normal state of a transition-metal dichalcogenide superconductor
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/1050eea6a87e4a8f8824e5fca8088926
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