Nematic fluctuations in an orbital selective superconductor Fe1+y Te1−x Se x

Despite a significant amount of research, there are still many unknowns about the underlying mechanisms of the superconductivity in Fe-based superconductors, in particular the roles of magnetism and nematicity. Here, the authors investigate the compositional dependence of the nematic susceptibility...

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Main Authors: Qianni Jiang, Yue Shi, Morten H. Christensen, Joshua J. Sanchez, Bevin Huang, Zhong Lin, Zhaoyu Liu, Paul Malinowski, Xiaodong Xu, Rafael M. Fernandes, Jiun-Haw Chu
Format: Article
Language:English
Published: Nature Portfolio 2023-03-01
Series:Communications Physics
Online Access:https://doi.org/10.1038/s42005-023-01154-8
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author Qianni Jiang
Yue Shi
Morten H. Christensen
Joshua J. Sanchez
Bevin Huang
Zhong Lin
Zhaoyu Liu
Paul Malinowski
Xiaodong Xu
Rafael M. Fernandes
Jiun-Haw Chu
author_facet Qianni Jiang
Yue Shi
Morten H. Christensen
Joshua J. Sanchez
Bevin Huang
Zhong Lin
Zhaoyu Liu
Paul Malinowski
Xiaodong Xu
Rafael M. Fernandes
Jiun-Haw Chu
author_sort Qianni Jiang
collection DOAJ
description Despite a significant amount of research, there are still many unknowns about the underlying mechanisms of the superconductivity in Fe-based superconductors, in particular the roles of magnetism and nematicity. Here, the authors investigate the compositional dependence of the nematic susceptibility in Fe1+yTe1−xSex and the interplay between nematic and spin fluctuations, as well as the effect of orbital differentiation on nematic instability.
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spelling doaj.art-f9fb0887e69c4a6ea1499edec47748c32023-03-22T11:32:16ZengNature PortfolioCommunications Physics2399-36502023-03-01611710.1038/s42005-023-01154-8Nematic fluctuations in an orbital selective superconductor Fe1+y Te1−x Se xQianni Jiang0Yue Shi1Morten H. Christensen2Joshua J. Sanchez3Bevin Huang4Zhong Lin5Zhaoyu Liu6Paul Malinowski7Xiaodong Xu8Rafael M. Fernandes9Jiun-Haw Chu10Department of Physics, University of WashingtonDepartment of Material Science and Engineering, University of WashingtonSchool of Physics and Astronomy, University of MinnesotaDepartment of Physics, University of WashingtonDepartment of Physics, University of WashingtonDepartment of Physics, University of WashingtonDepartment of Physics, University of WashingtonDepartment of Physics, University of WashingtonDepartment of Physics, University of WashingtonSchool of Physics and Astronomy, University of MinnesotaDepartment of Physics, University of WashingtonDespite a significant amount of research, there are still many unknowns about the underlying mechanisms of the superconductivity in Fe-based superconductors, in particular the roles of magnetism and nematicity. Here, the authors investigate the compositional dependence of the nematic susceptibility in Fe1+yTe1−xSex and the interplay between nematic and spin fluctuations, as well as the effect of orbital differentiation on nematic instability.https://doi.org/10.1038/s42005-023-01154-8
spellingShingle Qianni Jiang
Yue Shi
Morten H. Christensen
Joshua J. Sanchez
Bevin Huang
Zhong Lin
Zhaoyu Liu
Paul Malinowski
Xiaodong Xu
Rafael M. Fernandes
Jiun-Haw Chu
Nematic fluctuations in an orbital selective superconductor Fe1+y Te1−x Se x
Communications Physics
title Nematic fluctuations in an orbital selective superconductor Fe1+y Te1−x Se x
title_full Nematic fluctuations in an orbital selective superconductor Fe1+y Te1−x Se x
title_fullStr Nematic fluctuations in an orbital selective superconductor Fe1+y Te1−x Se x
title_full_unstemmed Nematic fluctuations in an orbital selective superconductor Fe1+y Te1−x Se x
title_short Nematic fluctuations in an orbital selective superconductor Fe1+y Te1−x Se x
title_sort nematic fluctuations in an orbital selective superconductor fe1 y te1 x se x
url https://doi.org/10.1038/s42005-023-01154-8
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