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

Zhuyi Zhang (张朱一), Zheng Chen, Ying Zhou, Yifang Yuan, Shuyang Wang, Jing Wang, Haiyang Yang, Chao An, Lili Zhang, Xiangde Zhu, Yonghui Zhou, Xuliang Chen (陈绪亮), Jianhui Zhou, Zhaorong Yang

DOI 10.1103/PhysRevB.103.224513 · Physical Review B

T1

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Abstract

Quasi-two-dimensional kagome metals AV3Sb5 (A=K, Rb, and Cs) have attracted much recent interest due to exotic quantum phenomena such as unconventional superconductivity, topological charge order, and giant anomalous Hall effect. Here we report pressure-induced reemergent superconductivity in CsV3Sb5 by electrical transport measurements under high pressures up to 47.9 GPa. We show that the superconducting critical temperature Tc is first enhanced by pressure and reaches its first maximum ∼8.9 K at 0.8 GPa; then the Tc is suppressed by pressure and cannot be detected above 7.5 GPa, forming a dome-shaped superconducting phase diagram. Remarkably, upon further compression above 16.5 GPa, a new superconducting state arises, of which Tc is enhanced by pressure to a second maximum ∼5.0 K and the reemergent superconductivity keeps robust up to 47.9 GPa. Combined with high-pressure synchrotron x-ray-diffraction measurements that demonstrate the stability of the pristine hexagonal phase up to 43.1 GPa, we suggest that the reemergence of superconductivity in the V-based superconductor could be attributed to a pressure-induced Lifshitz transition.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
CsV3Sb5

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5Pressure unresolvedonset
CsV3Sb5

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3.1Pressure unresolvedzero_resistance
CsV3Sb5

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8.90.8 GPaonset
CsV3Sb5

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3.70.8 GPazero_resistance
CsV3Sb5

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3.116.5 GPaonset
CsV3Sb5

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524.4 GPaonset
CsV3Sb5

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2.5Pressure unresolvedunknown

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