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Superconductivity in Topological Insulator Sb(2)Te(3) Induced by Pressure

Topological superconductivity is one of most fascinating properties of topological quantum matters that was theoretically proposed and can support Majorana Fermions at the edge state. Superconductivity was previously realized in a Cu-intercalated Bi(2)Se(3) topological compound or a Bi(2)Te(3) topol...

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Autores principales: Zhu, J., Zhang, J. L., Kong, P. P., Zhang, S. J., Yu, X. H., Zhu, J. L., Liu, Q. Q., Li, X., Yu, R. C., Ahuja, R., Yang, W. G., Shen, G. Y., Mao, H. K., Weng, H. M., Dai, X., Fang, Z., Zhao, Y. S., Jin, C. Q.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3687246/
https://www.ncbi.nlm.nih.gov/pubmed/23783511
http://dx.doi.org/10.1038/srep02016
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author Zhu, J.
Zhang, J. L.
Kong, P. P.
Zhang, S. J.
Yu, X. H.
Zhu, J. L.
Liu, Q. Q.
Li, X.
Yu, R. C.
Ahuja, R.
Yang, W. G.
Shen, G. Y.
Mao, H. K.
Weng, H. M.
Dai, X.
Fang, Z.
Zhao, Y. S.
Jin, C. Q.
author_facet Zhu, J.
Zhang, J. L.
Kong, P. P.
Zhang, S. J.
Yu, X. H.
Zhu, J. L.
Liu, Q. Q.
Li, X.
Yu, R. C.
Ahuja, R.
Yang, W. G.
Shen, G. Y.
Mao, H. K.
Weng, H. M.
Dai, X.
Fang, Z.
Zhao, Y. S.
Jin, C. Q.
author_sort Zhu, J.
collection PubMed
description Topological superconductivity is one of most fascinating properties of topological quantum matters that was theoretically proposed and can support Majorana Fermions at the edge state. Superconductivity was previously realized in a Cu-intercalated Bi(2)Se(3) topological compound or a Bi(2)Te(3) topological compound at high pressure. Here we report the discovery of superconductivity in the topological compound Sb(2)Te(3) when pressure was applied. The crystal structure analysis results reveal that superconductivity at a low-pressure range occurs at the ambient phase. The Hall coefficient measurements indicate the change of p-type carriers at a low-pressure range within the ambient phase, into n-type at higher pressures, showing intimate relation to superconducting transition temperature. The first principle calculations based on experimental measurements of the crystal lattice show that Sb(2)Te(3) retains its Dirac surface states within the low-pressure ambient phase where superconductivity was observed, which indicates a strong relationship between superconductivity and topology nature.
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spelling pubmed-36872462013-06-24 Superconductivity in Topological Insulator Sb(2)Te(3) Induced by Pressure Zhu, J. Zhang, J. L. Kong, P. P. Zhang, S. J. Yu, X. H. Zhu, J. L. Liu, Q. Q. Li, X. Yu, R. C. Ahuja, R. Yang, W. G. Shen, G. Y. Mao, H. K. Weng, H. M. Dai, X. Fang, Z. Zhao, Y. S. Jin, C. Q. Sci Rep Article Topological superconductivity is one of most fascinating properties of topological quantum matters that was theoretically proposed and can support Majorana Fermions at the edge state. Superconductivity was previously realized in a Cu-intercalated Bi(2)Se(3) topological compound or a Bi(2)Te(3) topological compound at high pressure. Here we report the discovery of superconductivity in the topological compound Sb(2)Te(3) when pressure was applied. The crystal structure analysis results reveal that superconductivity at a low-pressure range occurs at the ambient phase. The Hall coefficient measurements indicate the change of p-type carriers at a low-pressure range within the ambient phase, into n-type at higher pressures, showing intimate relation to superconducting transition temperature. The first principle calculations based on experimental measurements of the crystal lattice show that Sb(2)Te(3) retains its Dirac surface states within the low-pressure ambient phase where superconductivity was observed, which indicates a strong relationship between superconductivity and topology nature. Nature Publishing Group 2013-06-20 /pmc/articles/PMC3687246/ /pubmed/23783511 http://dx.doi.org/10.1038/srep02016 Text en Copyright © 2013, Macmillan Publishers Limited. All rights reserved http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Article
Zhu, J.
Zhang, J. L.
Kong, P. P.
Zhang, S. J.
Yu, X. H.
Zhu, J. L.
Liu, Q. Q.
Li, X.
Yu, R. C.
Ahuja, R.
Yang, W. G.
Shen, G. Y.
Mao, H. K.
Weng, H. M.
Dai, X.
Fang, Z.
Zhao, Y. S.
Jin, C. Q.
Superconductivity in Topological Insulator Sb(2)Te(3) Induced by Pressure
title Superconductivity in Topological Insulator Sb(2)Te(3) Induced by Pressure
title_full Superconductivity in Topological Insulator Sb(2)Te(3) Induced by Pressure
title_fullStr Superconductivity in Topological Insulator Sb(2)Te(3) Induced by Pressure
title_full_unstemmed Superconductivity in Topological Insulator Sb(2)Te(3) Induced by Pressure
title_short Superconductivity in Topological Insulator Sb(2)Te(3) Induced by Pressure
title_sort superconductivity in topological insulator sb(2)te(3) induced by pressure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3687246/
https://www.ncbi.nlm.nih.gov/pubmed/23783511
http://dx.doi.org/10.1038/srep02016
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