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Unconventional transformation of spin Dirac phase across a topological quantum phase transition

The topology of a topological material can be encoded in its surface states. These surface states can only be removed by a bulk topological quantum phase transition into a trivial phase. Here we use photoemission spectroscopy to image the formation of protected surface states in a topological insula...

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Autores principales: Xu, Su-Yang, Neupane, Madhab, Belopolski, Ilya, Liu, Chang, Alidoust, Nasser, Bian, Guang, Jia, Shuang, Landolt, Gabriel, Slomski, Batosz, Dil, J. Hugo, Shibayev, Pavel P., Basak, Susmita, Chang, Tay-Rong, Jeng, Horng-Tay, Cava, Robert J., Lin, Hsin, Bansil, Arun, Hasan, M. Zahid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Pub. Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4410671/
https://www.ncbi.nlm.nih.gov/pubmed/25882717
http://dx.doi.org/10.1038/ncomms7870
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author Xu, Su-Yang
Neupane, Madhab
Belopolski, Ilya
Liu, Chang
Alidoust, Nasser
Bian, Guang
Jia, Shuang
Landolt, Gabriel
Slomski, Batosz
Dil, J. Hugo
Shibayev, Pavel P.
Basak, Susmita
Chang, Tay-Rong
Jeng, Horng-Tay
Cava, Robert J.
Lin, Hsin
Bansil, Arun
Hasan, M. Zahid
author_facet Xu, Su-Yang
Neupane, Madhab
Belopolski, Ilya
Liu, Chang
Alidoust, Nasser
Bian, Guang
Jia, Shuang
Landolt, Gabriel
Slomski, Batosz
Dil, J. Hugo
Shibayev, Pavel P.
Basak, Susmita
Chang, Tay-Rong
Jeng, Horng-Tay
Cava, Robert J.
Lin, Hsin
Bansil, Arun
Hasan, M. Zahid
author_sort Xu, Su-Yang
collection PubMed
description The topology of a topological material can be encoded in its surface states. These surface states can only be removed by a bulk topological quantum phase transition into a trivial phase. Here we use photoemission spectroscopy to image the formation of protected surface states in a topological insulator as we chemically tune the system through a topological transition. Surprisingly, we discover an exotic spin-momentum locked, gapped surface state in the trivial phase that shares many important properties with the actual topological surface state in anticipation of the change of topology. Using a spin-resolved measurement, we show that apart from a surface bandgap these states develop spin textures similar to the topological surface states well before the transition. Our results offer a general paradigm for understanding how surface states in topological phases arise from a quantum phase transition and are suggestive for the future realization of Weyl arcs, condensed matter supersymmetry and other fascinating phenomena in the vicinity of a quantum criticality.
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spelling pubmed-44106712015-05-08 Unconventional transformation of spin Dirac phase across a topological quantum phase transition Xu, Su-Yang Neupane, Madhab Belopolski, Ilya Liu, Chang Alidoust, Nasser Bian, Guang Jia, Shuang Landolt, Gabriel Slomski, Batosz Dil, J. Hugo Shibayev, Pavel P. Basak, Susmita Chang, Tay-Rong Jeng, Horng-Tay Cava, Robert J. Lin, Hsin Bansil, Arun Hasan, M. Zahid Nat Commun Article The topology of a topological material can be encoded in its surface states. These surface states can only be removed by a bulk topological quantum phase transition into a trivial phase. Here we use photoemission spectroscopy to image the formation of protected surface states in a topological insulator as we chemically tune the system through a topological transition. Surprisingly, we discover an exotic spin-momentum locked, gapped surface state in the trivial phase that shares many important properties with the actual topological surface state in anticipation of the change of topology. Using a spin-resolved measurement, we show that apart from a surface bandgap these states develop spin textures similar to the topological surface states well before the transition. Our results offer a general paradigm for understanding how surface states in topological phases arise from a quantum phase transition and are suggestive for the future realization of Weyl arcs, condensed matter supersymmetry and other fascinating phenomena in the vicinity of a quantum criticality. Nature Pub. Group 2015-04-17 /pmc/articles/PMC4410671/ /pubmed/25882717 http://dx.doi.org/10.1038/ncomms7870 Text en Copyright © 2015, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Xu, Su-Yang
Neupane, Madhab
Belopolski, Ilya
Liu, Chang
Alidoust, Nasser
Bian, Guang
Jia, Shuang
Landolt, Gabriel
Slomski, Batosz
Dil, J. Hugo
Shibayev, Pavel P.
Basak, Susmita
Chang, Tay-Rong
Jeng, Horng-Tay
Cava, Robert J.
Lin, Hsin
Bansil, Arun
Hasan, M. Zahid
Unconventional transformation of spin Dirac phase across a topological quantum phase transition
title Unconventional transformation of spin Dirac phase across a topological quantum phase transition
title_full Unconventional transformation of spin Dirac phase across a topological quantum phase transition
title_fullStr Unconventional transformation of spin Dirac phase across a topological quantum phase transition
title_full_unstemmed Unconventional transformation of spin Dirac phase across a topological quantum phase transition
title_short Unconventional transformation of spin Dirac phase across a topological quantum phase transition
title_sort unconventional transformation of spin dirac phase across a topological quantum phase transition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4410671/
https://www.ncbi.nlm.nih.gov/pubmed/25882717
http://dx.doi.org/10.1038/ncomms7870
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