Dual nature of magnetic dopants and competing trends in topological insulators

Magnetic impurities break time reversal symmetry in topological insulators, but there has been disagreement between theory and experiment. Here, the authors study the response of topological states to magnetic dopants at the atomic level and show that, contrary to what generally believed, magnetic o...

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Autores principales: Paolo Sessi, Rudro R. Biswas, Thomas Bathon, Oliver Storz, Stefan Wilfert, Alessandro Barla, Konstantin A. Kokh, Oleg E. Tereshchenko, Kai Fauth, Matthias Bode, Alexander V. Balatsky
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/91d0dc9b12f24e3585fbe16a97d36a82
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spelling oai:doaj.org-article:91d0dc9b12f24e3585fbe16a97d36a822021-12-02T17:32:20ZDual nature of magnetic dopants and competing trends in topological insulators10.1038/ncomms120272041-1723https://doaj.org/article/91d0dc9b12f24e3585fbe16a97d36a822016-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms12027https://doaj.org/toc/2041-1723Magnetic impurities break time reversal symmetry in topological insulators, but there has been disagreement between theory and experiment. Here, the authors study the response of topological states to magnetic dopants at the atomic level and show that, contrary to what generally believed, magnetic order and gapless states can coexist.Paolo SessiRudro R. BiswasThomas BathonOliver StorzStefan WilfertAlessandro BarlaKonstantin A. KokhOleg E. TereshchenkoKai FauthMatthias BodeAlexander V. BalatskyNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-6 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Paolo Sessi
Rudro R. Biswas
Thomas Bathon
Oliver Storz
Stefan Wilfert
Alessandro Barla
Konstantin A. Kokh
Oleg E. Tereshchenko
Kai Fauth
Matthias Bode
Alexander V. Balatsky
Dual nature of magnetic dopants and competing trends in topological insulators
description Magnetic impurities break time reversal symmetry in topological insulators, but there has been disagreement between theory and experiment. Here, the authors study the response of topological states to magnetic dopants at the atomic level and show that, contrary to what generally believed, magnetic order and gapless states can coexist.
format article
author Paolo Sessi
Rudro R. Biswas
Thomas Bathon
Oliver Storz
Stefan Wilfert
Alessandro Barla
Konstantin A. Kokh
Oleg E. Tereshchenko
Kai Fauth
Matthias Bode
Alexander V. Balatsky
author_facet Paolo Sessi
Rudro R. Biswas
Thomas Bathon
Oliver Storz
Stefan Wilfert
Alessandro Barla
Konstantin A. Kokh
Oleg E. Tereshchenko
Kai Fauth
Matthias Bode
Alexander V. Balatsky
author_sort Paolo Sessi
title Dual nature of magnetic dopants and competing trends in topological insulators
title_short Dual nature of magnetic dopants and competing trends in topological insulators
title_full Dual nature of magnetic dopants and competing trends in topological insulators
title_fullStr Dual nature of magnetic dopants and competing trends in topological insulators
title_full_unstemmed Dual nature of magnetic dopants and competing trends in topological insulators
title_sort dual nature of magnetic dopants and competing trends in topological insulators
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/91d0dc9b12f24e3585fbe16a97d36a82
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