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Pressure-induced reemergence of superconductivity in the topological kagome metal CsV3Sb5

作者:Zhuyi Zhang, Zheng Chen, Ying Zhou, Yifang Yuan, Shuyang Wang, Jing Wang, Haiyang Yang, Chao An, Lili Zhang, Xiangde Zhu, Yonghui Zhou, Xuliang Chen, Jianhui Zhou, Zhaorong Yang · 发表于:Physical review. B./Physical review. B · 年份:2021 · DOI:10.1103/physrevb.103.224513 · 被引用次数:206 · 研究领域:Topological Materials and Phenomena、Advanced Condensed Matter Physics、Quantum, superfluid, helium dynamics

The quasi-two-dimensional kagome superconductors $A$V${}_{3}$Sb${}_{5}$ ($A$ $=$ K, Rb, and Cs) have attracted great interest due to various exotic quantum phenomena, such as topological charge density waves and the giant anomalous Hall effect. Here, the authors find two-dome unconventional superconductivity in CsV${}_{3}$Sb${}_{5}$ under high pressure. They also confirm the absence of a structural phase transition up to 43.1 GPa through high-pressure synchrotron x-ray diffraction measurements, suggesting that the novel reemergent superconductivity dome can be attributed to the Fermi surface reconstruction caused by the Lifshitz transition.