Design and realization of topological Dirac fermions on a triangular lattice

Atomic monolayers of large-gap quantum spin Hall insulators are challenging to synthesize. Here, the authors realize massive Dirac fermions emerging from Bloch wave-function interference on a triangular lattice and achieve topologically non-trivial domains with unprecedented spatial extension.

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Autores principales: Maximilian Bauernfeind, Jonas Erhardt, Philipp Eck, Pardeep K. Thakur, Judith Gabel, Tien-Lin Lee, Jörg Schäfer, Simon Moser, Domenico Di Sante, Ralph Claessen, Giorgio Sangiovanni
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/e531fa538dbe47abb33386d37d3f4f98
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spelling oai:doaj.org-article:e531fa538dbe47abb33386d37d3f4f982021-12-02T15:15:45ZDesign and realization of topological Dirac fermions on a triangular lattice10.1038/s41467-021-25627-y2041-1723https://doaj.org/article/e531fa538dbe47abb33386d37d3f4f982021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25627-yhttps://doaj.org/toc/2041-1723Atomic monolayers of large-gap quantum spin Hall insulators are challenging to synthesize. Here, the authors realize massive Dirac fermions emerging from Bloch wave-function interference on a triangular lattice and achieve topologically non-trivial domains with unprecedented spatial extension.Maximilian BauernfeindJonas ErhardtPhilipp EckPardeep K. ThakurJudith GabelTien-Lin LeeJörg SchäferSimon MoserDomenico Di SanteRalph ClaessenGiorgio SangiovanniNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Maximilian Bauernfeind
Jonas Erhardt
Philipp Eck
Pardeep K. Thakur
Judith Gabel
Tien-Lin Lee
Jörg Schäfer
Simon Moser
Domenico Di Sante
Ralph Claessen
Giorgio Sangiovanni
Design and realization of topological Dirac fermions on a triangular lattice
description Atomic monolayers of large-gap quantum spin Hall insulators are challenging to synthesize. Here, the authors realize massive Dirac fermions emerging from Bloch wave-function interference on a triangular lattice and achieve topologically non-trivial domains with unprecedented spatial extension.
format article
author Maximilian Bauernfeind
Jonas Erhardt
Philipp Eck
Pardeep K. Thakur
Judith Gabel
Tien-Lin Lee
Jörg Schäfer
Simon Moser
Domenico Di Sante
Ralph Claessen
Giorgio Sangiovanni
author_facet Maximilian Bauernfeind
Jonas Erhardt
Philipp Eck
Pardeep K. Thakur
Judith Gabel
Tien-Lin Lee
Jörg Schäfer
Simon Moser
Domenico Di Sante
Ralph Claessen
Giorgio Sangiovanni
author_sort Maximilian Bauernfeind
title Design and realization of topological Dirac fermions on a triangular lattice
title_short Design and realization of topological Dirac fermions on a triangular lattice
title_full Design and realization of topological Dirac fermions on a triangular lattice
title_fullStr Design and realization of topological Dirac fermions on a triangular lattice
title_full_unstemmed Design and realization of topological Dirac fermions on a triangular lattice
title_sort design and realization of topological dirac fermions on a triangular lattice
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/e531fa538dbe47abb33386d37d3f4f98
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AT pardeepkthakur designandrealizationoftopologicaldiracfermionsonatriangularlattice
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AT jorgschafer designandrealizationoftopologicaldiracfermionsonatriangularlattice
AT simonmoser designandrealizationoftopologicaldiracfermionsonatriangularlattice
AT domenicodisante designandrealizationoftopologicaldiracfermionsonatriangularlattice
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AT giorgiosangiovanni designandrealizationoftopologicaldiracfermionsonatriangularlattice
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