Pressure-induced reconstitution of Fermi surfaces and spin fluctuations in S-substituted FeSe
Abstract FeSe is a unique high- $$T_c$$ T c iron-based superconductor in which nematicity, superconductivity, and magnetism are entangled with each other in the P-T phase diagram. We performed $$^{77}$$ 77 Se-nuclear magnetic resonance measurements under pressures of up to 3.9 GPa on 12% S-substitut...
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2021-08-01
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Online Access: | https://doi.org/10.1038/s41598-021-96277-9 |
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doaj-219bd1cddd344399849873da870457ba2021-08-29T11:22:26ZengNature Publishing GroupScientific Reports2045-23222021-08-011111710.1038/s41598-021-96277-9Pressure-induced reconstitution of Fermi surfaces and spin fluctuations in S-substituted FeSeT. Kuwayama0K. Matsuura1J. Gouchi2Y. Yamakawa3Y. Mizukami4S. Kasahara5Y. Matsuda6T. Shibauchi7H. Kontani8Y. Uwatoko9N. Fujiwara10Graduate School of Human and Environmental Studies, Kyoto UniversityGraduate School of Frontier Sciences, University of TokyoInstitute for Solid State Physics, University of TokyoDepartment of Physics, Nagoya UniversityGraduate School of Frontier Sciences, University of TokyoDivision of Physics and Astronomy, Graduate School of Science, Kyoto UniversityDivision of Physics and Astronomy, Graduate School of Science, Kyoto UniversityGraduate School of Frontier Sciences, University of TokyoDepartment of Physics, Nagoya UniversityInstitute for Solid State Physics, University of TokyoGraduate School of Human and Environmental Studies, Kyoto UniversityAbstract FeSe is a unique high- $$T_c$$ T c iron-based superconductor in which nematicity, superconductivity, and magnetism are entangled with each other in the P-T phase diagram. We performed $$^{77}$$ 77 Se-nuclear magnetic resonance measurements under pressures of up to 3.9 GPa on 12% S-substituted FeSe, in which the complex overlap between the nematicity and magnetism are resolved. A pressure-induced Lifshitz transition was observed at 1.0 GPa as an anomaly of the density of states and as double superconducting (SC) domes accompanied by different types of antiferromagnetic (AF) fluctuations. The low- $$T_{\mathrm{c}}$$ T c SC dome below 1 GPa is accompanied by strong AF fluctuations, whereas the high- $$T_{\mathrm{c}}$$ T c SC dome develops above 1 GPa, where AF fluctuations are fairly weak. These results suggest the importance of the $$d_{xy}$$ d xy orbital and its intra-orbital coupling for the high- $$T_{\mathrm{c}}$$ T c superconductivity.https://doi.org/10.1038/s41598-021-96277-9 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
T. Kuwayama K. Matsuura J. Gouchi Y. Yamakawa Y. Mizukami S. Kasahara Y. Matsuda T. Shibauchi H. Kontani Y. Uwatoko N. Fujiwara |
spellingShingle |
T. Kuwayama K. Matsuura J. Gouchi Y. Yamakawa Y. Mizukami S. Kasahara Y. Matsuda T. Shibauchi H. Kontani Y. Uwatoko N. Fujiwara Pressure-induced reconstitution of Fermi surfaces and spin fluctuations in S-substituted FeSe Scientific Reports |
author_facet |
T. Kuwayama K. Matsuura J. Gouchi Y. Yamakawa Y. Mizukami S. Kasahara Y. Matsuda T. Shibauchi H. Kontani Y. Uwatoko N. Fujiwara |
author_sort |
T. Kuwayama |
title |
Pressure-induced reconstitution of Fermi surfaces and spin fluctuations in S-substituted FeSe |
title_short |
Pressure-induced reconstitution of Fermi surfaces and spin fluctuations in S-substituted FeSe |
title_full |
Pressure-induced reconstitution of Fermi surfaces and spin fluctuations in S-substituted FeSe |
title_fullStr |
Pressure-induced reconstitution of Fermi surfaces and spin fluctuations in S-substituted FeSe |
title_full_unstemmed |
Pressure-induced reconstitution of Fermi surfaces and spin fluctuations in S-substituted FeSe |
title_sort |
pressure-induced reconstitution of fermi surfaces and spin fluctuations in s-substituted fese |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-08-01 |
description |
Abstract FeSe is a unique high- $$T_c$$ T c iron-based superconductor in which nematicity, superconductivity, and magnetism are entangled with each other in the P-T phase diagram. We performed $$^{77}$$ 77 Se-nuclear magnetic resonance measurements under pressures of up to 3.9 GPa on 12% S-substituted FeSe, in which the complex overlap between the nematicity and magnetism are resolved. A pressure-induced Lifshitz transition was observed at 1.0 GPa as an anomaly of the density of states and as double superconducting (SC) domes accompanied by different types of antiferromagnetic (AF) fluctuations. The low- $$T_{\mathrm{c}}$$ T c SC dome below 1 GPa is accompanied by strong AF fluctuations, whereas the high- $$T_{\mathrm{c}}$$ T c SC dome develops above 1 GPa, where AF fluctuations are fairly weak. These results suggest the importance of the $$d_{xy}$$ d xy orbital and its intra-orbital coupling for the high- $$T_{\mathrm{c}}$$ T c superconductivity. |
url |
https://doi.org/10.1038/s41598-021-96277-9 |
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