Electronic nature of charge density wave and electron-phonon coupling in kagome superconductor KV 3 Sb 5

The Kagome superconductors AV Sb (A = K, Rb, Cs) have received enormous attention due to their nontrivial topological electronic structure, anomalous physical properties and superconductivity. Unconventional charge density wave (CDW) has been detected in AV Sb . High-precision electronic structure d...

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Veröffentlicht in:Nature communications 2022-01, Vol.13 (1), p.273
Hauptverfasser: Luo, Hailan, Gao, Qiang, Liu, Hongxiong, Gu, Yuhao, Wu, Dingsong, Yi, Changjiang, Jia, Junjie, Wu, Shilong, Luo, Xiangyu, Xu, Yu, Zhao, Lin, Wang, Qingyan, Mao, Hanqing, Liu, Guodong, Zhu, Zhihai, Shi, Youguo, Jiang, Kun, Hu, Jiangping, Xu, Zuyan, Zhou, X J
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Sprache:eng
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Zusammenfassung:The Kagome superconductors AV Sb (A = K, Rb, Cs) have received enormous attention due to their nontrivial topological electronic structure, anomalous physical properties and superconductivity. Unconventional charge density wave (CDW) has been detected in AV Sb . High-precision electronic structure determination is essential to understand its origin. Here we unveil electronic nature of the CDW phase in our high-resolution angle-resolved photoemission measurements on KV Sb . We have observed CDW-induced Fermi surface reconstruction and the associated band folding. The CDW-induced band splitting and the associated gap opening have been revealed at the boundary of the pristine and reconstructed Brillouin zones. The Fermi surface- and momentum-dependent CDW gap is measured and the strongly anisotropic CDW gap is observed for all the V-derived Fermi surface. In particular, we have observed signatures of the electron-phonon coupling in KV Sb . These results provide key insights in understanding the nature of the CDW state and its interplay with superconductivity in AV Sb superconductors.
ISSN:2041-1723
DOI:10.1038/s41467-021-27946-6