配对
符号(数学)
超导电性
凝聚态物理
物理
各向异性
量子力学
数学
数学分析
作者
M. Roppongi,K. Ishihara,Y. Tanaka,K. Ogawa,Keisuke Okada,S. Liu,Kiyotaka Mukasa,Yuta Mizukami,Yoshiya Uwatoko,Romain Grasset,M. Kończykowski,Brenden R. Ortiz,Stephen D. Wilson,K. Hashimoto,T. Shibauchi
标识
DOI:10.1038/s41467-023-36273-x
摘要
Abstract The recently discovered kagome superconductors A V 3 Sb 5 ( A = K, Rb, Cs) exhibit unusual charge-density-wave (CDW) orders with time-reversal and rotational symmetry breaking. One of the most crucial unresolved issues is identifying the symmetry of the superconductivity that develops inside the CDW phase. Theory predicts a variety of unconventional superconducting symmetries with sign-changing and chiral order parameters. Experimentally, however, superconducting phase information in A V 3 Sb 5 is still lacking. Here we report the impurity effects in CsV 3 Sb 5 using electron irradiation as a phase-sensitive probe of superconductivity. Our magnetic penetration depth measurements reveal that with increasing impurities, an anisotropic fully-gapped state changes to an isotropic full-gap state without passing through a nodal state. Furthermore, transport measurements under pressure show that the double superconducting dome in the pressure-temperature phase diagram survives against sufficient impurities. These results support that CsV 3 Sb 5 is a non-chiral, anisotropic s -wave superconductor with no sign change both at ambient and under pressure.
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