Weyl-like points from band inversions of spin-polarised surface states in NbGeSb

Bulk band inversions in solids may unlock topological surface phenomena and symmetry-protected states. Here, the authors generate a surface state band inversion in the nonsymmorphic semimetal NbGeSb, leading to protected crossing points in the resulting spin-orbital entangled surface band structure.

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Autores principales: I. Marković, C. A. Hooley, O. J. Clark, F. Mazzola, M. D. Watson, J. M. Riley, K. Volckaert, K. Underwood, M. S. Dyer, P. A. E. Murgatroyd, K. J. Murphy, P. Le Fèvre, F. Bertran, J. Fujii, I. Vobornik, S. Wu, T. Okuda, J. Alaria, P. D. C. King
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/c435b7ac11a5424e98295bd804d0521e
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spelling oai:doaj.org-article:c435b7ac11a5424e98295bd804d0521e2021-12-02T16:57:24ZWeyl-like points from band inversions of spin-polarised surface states in NbGeSb10.1038/s41467-019-13464-z2041-1723https://doaj.org/article/c435b7ac11a5424e98295bd804d0521e2019-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13464-zhttps://doaj.org/toc/2041-1723Bulk band inversions in solids may unlock topological surface phenomena and symmetry-protected states. Here, the authors generate a surface state band inversion in the nonsymmorphic semimetal NbGeSb, leading to protected crossing points in the resulting spin-orbital entangled surface band structure.I. MarkovićC. A. HooleyO. J. ClarkF. MazzolaM. D. WatsonJ. M. RileyK. VolckaertK. UnderwoodM. S. DyerP. A. E. MurgatroydK. J. MurphyP. Le FèvreF. BertranJ. FujiiI. VobornikS. WuT. OkudaJ. AlariaP. D. C. KingNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
I. Marković
C. A. Hooley
O. J. Clark
F. Mazzola
M. D. Watson
J. M. Riley
K. Volckaert
K. Underwood
M. S. Dyer
P. A. E. Murgatroyd
K. J. Murphy
P. Le Fèvre
F. Bertran
J. Fujii
I. Vobornik
S. Wu
T. Okuda
J. Alaria
P. D. C. King
Weyl-like points from band inversions of spin-polarised surface states in NbGeSb
description Bulk band inversions in solids may unlock topological surface phenomena and symmetry-protected states. Here, the authors generate a surface state band inversion in the nonsymmorphic semimetal NbGeSb, leading to protected crossing points in the resulting spin-orbital entangled surface band structure.
format article
author I. Marković
C. A. Hooley
O. J. Clark
F. Mazzola
M. D. Watson
J. M. Riley
K. Volckaert
K. Underwood
M. S. Dyer
P. A. E. Murgatroyd
K. J. Murphy
P. Le Fèvre
F. Bertran
J. Fujii
I. Vobornik
S. Wu
T. Okuda
J. Alaria
P. D. C. King
author_facet I. Marković
C. A. Hooley
O. J. Clark
F. Mazzola
M. D. Watson
J. M. Riley
K. Volckaert
K. Underwood
M. S. Dyer
P. A. E. Murgatroyd
K. J. Murphy
P. Le Fèvre
F. Bertran
J. Fujii
I. Vobornik
S. Wu
T. Okuda
J. Alaria
P. D. C. King
author_sort I. Marković
title Weyl-like points from band inversions of spin-polarised surface states in NbGeSb
title_short Weyl-like points from band inversions of spin-polarised surface states in NbGeSb
title_full Weyl-like points from band inversions of spin-polarised surface states in NbGeSb
title_fullStr Weyl-like points from band inversions of spin-polarised surface states in NbGeSb
title_full_unstemmed Weyl-like points from band inversions of spin-polarised surface states in NbGeSb
title_sort weyl-like points from band inversions of spin-polarised surface states in nbgesb
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/c435b7ac11a5424e98295bd804d0521e
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