Resolving Dirac electrons with broadband high-resolution NMR

The detection of topological states is restricted to limited experimental tools. Here, the authors apply broadband solid-state 125Te nuclear magnetic resonance on Bi2Te3 nanoplatelets uncovering signals distinguishing edge Dirac electrons and bulk electrons.

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Autores principales: Wassilios Papawassiliou, Aleksander Jaworski, Andrew J. Pell, Jae Hyuck Jang, Yeonho Kim, Sang-Chul Lee, Hae Jin Kim, Yasser Alwahedi, Saeed Alhassan, Ahmed Subrati, Michael Fardis, Marina Karagianni, Nikolaos Panopoulos, Janez Dolinšek, Georgios Papavassiliou
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/b2026c380a54477790d1900500b92c27
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spelling oai:doaj.org-article:b2026c380a54477790d1900500b92c272021-12-02T15:37:11ZResolving Dirac electrons with broadband high-resolution NMR10.1038/s41467-020-14838-42041-1723https://doaj.org/article/b2026c380a54477790d1900500b92c272020-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14838-4https://doaj.org/toc/2041-1723The detection of topological states is restricted to limited experimental tools. Here, the authors apply broadband solid-state 125Te nuclear magnetic resonance on Bi2Te3 nanoplatelets uncovering signals distinguishing edge Dirac electrons and bulk electrons.Wassilios PapawassiliouAleksander JaworskiAndrew J. PellJae Hyuck JangYeonho KimSang-Chul LeeHae Jin KimYasser AlwahediSaeed AlhassanAhmed SubratiMichael FardisMarina KaragianniNikolaos PanopoulosJanez DolinšekGeorgios PapavassiliouNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-7 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Wassilios Papawassiliou
Aleksander Jaworski
Andrew J. Pell
Jae Hyuck Jang
Yeonho Kim
Sang-Chul Lee
Hae Jin Kim
Yasser Alwahedi
Saeed Alhassan
Ahmed Subrati
Michael Fardis
Marina Karagianni
Nikolaos Panopoulos
Janez Dolinšek
Georgios Papavassiliou
Resolving Dirac electrons with broadband high-resolution NMR
description The detection of topological states is restricted to limited experimental tools. Here, the authors apply broadband solid-state 125Te nuclear magnetic resonance on Bi2Te3 nanoplatelets uncovering signals distinguishing edge Dirac electrons and bulk electrons.
format article
author Wassilios Papawassiliou
Aleksander Jaworski
Andrew J. Pell
Jae Hyuck Jang
Yeonho Kim
Sang-Chul Lee
Hae Jin Kim
Yasser Alwahedi
Saeed Alhassan
Ahmed Subrati
Michael Fardis
Marina Karagianni
Nikolaos Panopoulos
Janez Dolinšek
Georgios Papavassiliou
author_facet Wassilios Papawassiliou
Aleksander Jaworski
Andrew J. Pell
Jae Hyuck Jang
Yeonho Kim
Sang-Chul Lee
Hae Jin Kim
Yasser Alwahedi
Saeed Alhassan
Ahmed Subrati
Michael Fardis
Marina Karagianni
Nikolaos Panopoulos
Janez Dolinšek
Georgios Papavassiliou
author_sort Wassilios Papawassiliou
title Resolving Dirac electrons with broadband high-resolution NMR
title_short Resolving Dirac electrons with broadband high-resolution NMR
title_full Resolving Dirac electrons with broadband high-resolution NMR
title_fullStr Resolving Dirac electrons with broadband high-resolution NMR
title_full_unstemmed Resolving Dirac electrons with broadband high-resolution NMR
title_sort resolving dirac electrons with broadband high-resolution nmr
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/b2026c380a54477790d1900500b92c27
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AT andrewjpell resolvingdiracelectronswithbroadbandhighresolutionnmr
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AT marinakaragianni resolvingdiracelectronswithbroadbandhighresolutionnmr
AT nikolaospanopoulos resolvingdiracelectronswithbroadbandhighresolutionnmr
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