A full gap above the Fermi level: the charge density wave of monolayer VS2

A charge density wave (CDW) normally creates a gap at the Fermi level, inducing a metal-insulator transition. Here, the authors report that a CDW gap resides in the unoccupied states but induces a topological metal-metal transition at the Fermi level in monolayer VS2.

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Autores principales: Camiel van Efferen, Jan Berges, Joshua Hall, Erik van Loon, Stefan Kraus, Arne Schobert, Tobias Wekking, Felix Huttmann, Eline Plaar, Nico Rothenbach, Katharina Ollefs, Lucas Machado Arruda, Nick Brookes, Gunnar Schönhoff, Kurt Kummer, Heiko Wende, Tim Wehling, Thomas Michely
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/0fe1cd1e04ef4ca6be5f8efac4c2e22e
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spelling oai:doaj.org-article:0fe1cd1e04ef4ca6be5f8efac4c2e22e2021-11-28T12:31:09ZA full gap above the Fermi level: the charge density wave of monolayer VS210.1038/s41467-021-27094-x2041-1723https://doaj.org/article/0fe1cd1e04ef4ca6be5f8efac4c2e22e2021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-27094-xhttps://doaj.org/toc/2041-1723A charge density wave (CDW) normally creates a gap at the Fermi level, inducing a metal-insulator transition. Here, the authors report that a CDW gap resides in the unoccupied states but induces a topological metal-metal transition at the Fermi level in monolayer VS2.Camiel van EfferenJan BergesJoshua HallErik van LoonStefan KrausArne SchobertTobias WekkingFelix HuttmannEline PlaarNico RothenbachKatharina OllefsLucas Machado ArrudaNick BrookesGunnar SchönhoffKurt KummerHeiko WendeTim WehlingThomas MichelyNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Camiel van Efferen
Jan Berges
Joshua Hall
Erik van Loon
Stefan Kraus
Arne Schobert
Tobias Wekking
Felix Huttmann
Eline Plaar
Nico Rothenbach
Katharina Ollefs
Lucas Machado Arruda
Nick Brookes
Gunnar Schönhoff
Kurt Kummer
Heiko Wende
Tim Wehling
Thomas Michely
A full gap above the Fermi level: the charge density wave of monolayer VS2
description A charge density wave (CDW) normally creates a gap at the Fermi level, inducing a metal-insulator transition. Here, the authors report that a CDW gap resides in the unoccupied states but induces a topological metal-metal transition at the Fermi level in monolayer VS2.
format article
author Camiel van Efferen
Jan Berges
Joshua Hall
Erik van Loon
Stefan Kraus
Arne Schobert
Tobias Wekking
Felix Huttmann
Eline Plaar
Nico Rothenbach
Katharina Ollefs
Lucas Machado Arruda
Nick Brookes
Gunnar Schönhoff
Kurt Kummer
Heiko Wende
Tim Wehling
Thomas Michely
author_facet Camiel van Efferen
Jan Berges
Joshua Hall
Erik van Loon
Stefan Kraus
Arne Schobert
Tobias Wekking
Felix Huttmann
Eline Plaar
Nico Rothenbach
Katharina Ollefs
Lucas Machado Arruda
Nick Brookes
Gunnar Schönhoff
Kurt Kummer
Heiko Wende
Tim Wehling
Thomas Michely
author_sort Camiel van Efferen
title A full gap above the Fermi level: the charge density wave of monolayer VS2
title_short A full gap above the Fermi level: the charge density wave of monolayer VS2
title_full A full gap above the Fermi level: the charge density wave of monolayer VS2
title_fullStr A full gap above the Fermi level: the charge density wave of monolayer VS2
title_full_unstemmed A full gap above the Fermi level: the charge density wave of monolayer VS2
title_sort full gap above the fermi level: the charge density wave of monolayer vs2
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/0fe1cd1e04ef4ca6be5f8efac4c2e22e
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