2024/11/29 by C. C. 成成 Zhao 赵, L. S. 临舒 Wang 王, W. 威 Xia 夏 +17 · 4 citations
Physics and Astronomy · #Topological Materials and Phenomena #Rare-earth and actinide compounds #Advanced Condensed Matter Physics
paper · doi:10.1088/0256-307x/41/12/127303
Abstract V-based kagome superconductors A V 3 Sb 5 ( A = K, Rb, and Cs) host a charge density wave (CDW) and a topological nontrivial band structure, thereby providing a great platform to study the interplay of superconductivity (SC), CDW, frustration, and topology. Here, we report ultralow-temperature thermal conductivity measurements of CsV 3 Sb 5 and Ta-doped Cs(V 0.86 Ta 0.14 ) 3 Sb 5 and scanning tunneling microscopy (STM) measurements of CsV 3 Sb 5 . The finite residual linear term of thermal conductivity at zero magnetic field suggests the existence of a residual density of states (DOS) in the superconducting state of CsV 3 Sb 5 . This is supported by the observation of non-zero conductance at zero bias in STM spectrum at an electronic temperature of 90 mK. However, in Cs(V 0.86 Ta 0.14 ) 3 Sb 5 , which does not have CDW order, there is no evidence for the residual DOS. These results show the importance of CDW order for the residual DOS, and that a nodal s -wave gap or residual Fermi arc may be the origin of the residual DOS in such an unusual multiband kagome superconductor, CsV 3 Sb 5 .