Direction and symmetry transition of the vector order parameter in topological superconductors Cu x Bi2Se3

The understanding of the vector order parameter for Cu0.3Bi2Se3 topological superconductor remains unclear. Here, Kawai et al. report a surprising disappearance of the in-plane upper critical field anisotropy for Cu x Bi2Se3 single crystals with more carriers, indicating a transition from nematic to...

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Autores principales: T. Kawai, C. G. Wang, Y. Kandori, Y. Honoki, K. Matano, T. Kambe, Guo-qing Zheng
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/64b4765ecb1045aba457b6d501740063
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spelling oai:doaj.org-article:64b4765ecb1045aba457b6d5017400632021-12-02T17:31:38ZDirection and symmetry transition of the vector order parameter in topological superconductors Cu x Bi2Se310.1038/s41467-019-14126-w2041-1723https://doaj.org/article/64b4765ecb1045aba457b6d5017400632020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-14126-whttps://doaj.org/toc/2041-1723The understanding of the vector order parameter for Cu0.3Bi2Se3 topological superconductor remains unclear. Here, Kawai et al. report a surprising disappearance of the in-plane upper critical field anisotropy for Cu x Bi2Se3 single crystals with more carriers, indicating a transition from nematic to chiral superconducting gap symmetry.T. KawaiC. G. WangY. KandoriY. HonokiK. MatanoT. KambeGuo-qing ZhengNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-7 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
T. Kawai
C. G. Wang
Y. Kandori
Y. Honoki
K. Matano
T. Kambe
Guo-qing Zheng
Direction and symmetry transition of the vector order parameter in topological superconductors Cu x Bi2Se3
description The understanding of the vector order parameter for Cu0.3Bi2Se3 topological superconductor remains unclear. Here, Kawai et al. report a surprising disappearance of the in-plane upper critical field anisotropy for Cu x Bi2Se3 single crystals with more carriers, indicating a transition from nematic to chiral superconducting gap symmetry.
format article
author T. Kawai
C. G. Wang
Y. Kandori
Y. Honoki
K. Matano
T. Kambe
Guo-qing Zheng
author_facet T. Kawai
C. G. Wang
Y. Kandori
Y. Honoki
K. Matano
T. Kambe
Guo-qing Zheng
author_sort T. Kawai
title Direction and symmetry transition of the vector order parameter in topological superconductors Cu x Bi2Se3
title_short Direction and symmetry transition of the vector order parameter in topological superconductors Cu x Bi2Se3
title_full Direction and symmetry transition of the vector order parameter in topological superconductors Cu x Bi2Se3
title_fullStr Direction and symmetry transition of the vector order parameter in topological superconductors Cu x Bi2Se3
title_full_unstemmed Direction and symmetry transition of the vector order parameter in topological superconductors Cu x Bi2Se3
title_sort direction and symmetry transition of the vector order parameter in topological superconductors cu x bi2se3
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/64b4765ecb1045aba457b6d501740063
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AT cgwang directionandsymmetrytransitionofthevectororderparameterintopologicalsuperconductorscuxbi2se3
AT ykandori directionandsymmetrytransitionofthevectororderparameterintopologicalsuperconductorscuxbi2se3
AT yhonoki directionandsymmetrytransitionofthevectororderparameterintopologicalsuperconductorscuxbi2se3
AT kmatano directionandsymmetrytransitionofthevectororderparameterintopologicalsuperconductorscuxbi2se3
AT tkambe directionandsymmetrytransitionofthevectororderparameterintopologicalsuperconductorscuxbi2se3
AT guoqingzheng directionandsymmetrytransitionofthevectororderparameterintopologicalsuperconductorscuxbi2se3
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