Hidden phase in a two-dimensional Sn layer stabilized by modulation hole doping

Broken symmetry phases may occur in 2D materials upon doping, yet introducing doping without inducing chemical disorder remains a challenge. Here, the authors use a modulation doping approach that unveils a hidden equilibrium phase involving spontaneous symmetry breaking in a hole-doped Sn bilayer.

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Autores principales: Fangfei Ming, Daniel Mulugeta, Weisong Tu, Tyler S. Smith, Paolo Vilmercati, Geunseop Lee, Ying-Tzu Huang, Renee D. Diehl, Paul C. Snijders, Hanno H. Weitering
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/c0eb9e8477244f58927818b988aaa69f
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spelling oai:doaj.org-article:c0eb9e8477244f58927818b988aaa69f2021-12-02T14:40:26ZHidden phase in a two-dimensional Sn layer stabilized by modulation hole doping10.1038/ncomms147212041-1723https://doaj.org/article/c0eb9e8477244f58927818b988aaa69f2017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14721https://doaj.org/toc/2041-1723Broken symmetry phases may occur in 2D materials upon doping, yet introducing doping without inducing chemical disorder remains a challenge. Here, the authors use a modulation doping approach that unveils a hidden equilibrium phase involving spontaneous symmetry breaking in a hole-doped Sn bilayer.Fangfei MingDaniel MulugetaWeisong TuTyler S. SmithPaolo VilmercatiGeunseop LeeYing-Tzu HuangRenee D. DiehlPaul C. SnijdersHanno H. WeiteringNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-6 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Fangfei Ming
Daniel Mulugeta
Weisong Tu
Tyler S. Smith
Paolo Vilmercati
Geunseop Lee
Ying-Tzu Huang
Renee D. Diehl
Paul C. Snijders
Hanno H. Weitering
Hidden phase in a two-dimensional Sn layer stabilized by modulation hole doping
description Broken symmetry phases may occur in 2D materials upon doping, yet introducing doping without inducing chemical disorder remains a challenge. Here, the authors use a modulation doping approach that unveils a hidden equilibrium phase involving spontaneous symmetry breaking in a hole-doped Sn bilayer.
format article
author Fangfei Ming
Daniel Mulugeta
Weisong Tu
Tyler S. Smith
Paolo Vilmercati
Geunseop Lee
Ying-Tzu Huang
Renee D. Diehl
Paul C. Snijders
Hanno H. Weitering
author_facet Fangfei Ming
Daniel Mulugeta
Weisong Tu
Tyler S. Smith
Paolo Vilmercati
Geunseop Lee
Ying-Tzu Huang
Renee D. Diehl
Paul C. Snijders
Hanno H. Weitering
author_sort Fangfei Ming
title Hidden phase in a two-dimensional Sn layer stabilized by modulation hole doping
title_short Hidden phase in a two-dimensional Sn layer stabilized by modulation hole doping
title_full Hidden phase in a two-dimensional Sn layer stabilized by modulation hole doping
title_fullStr Hidden phase in a two-dimensional Sn layer stabilized by modulation hole doping
title_full_unstemmed Hidden phase in a two-dimensional Sn layer stabilized by modulation hole doping
title_sort hidden phase in a two-dimensional sn layer stabilized by modulation hole doping
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/c0eb9e8477244f58927818b988aaa69f
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AT tylerssmith hiddenphaseinatwodimensionalsnlayerstabilizedbymodulationholedoping
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AT paulcsnijders hiddenphaseinatwodimensionalsnlayerstabilizedbymodulationholedoping
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