Distinct pressure evolution of superconductivity and charge-density-wave in kagome superconductor CsVSb thin flakes
arXiv:2402.06248 · doi:10.1103/PhysRevB.109.054501
Abstract
It is intriguing to explore the coexistence and (or) competition between charge-density-wave (CDW) and superconductivity (SC) in many correlated electron systems, such as cuprates, organic superconductors and dichacolgenides. Among them, the recently discovered topological kagome metals AVSb (A=K, Rb, Cs) serve as an ideal platform to study the intricate relation between them. Here, we report the electrical resistance measurements on CsVSb thin flakes ( 60 nm) under hydrostatic pressure up to 2.12 GPa to compare its pressure phase diagram of CDW and SC with its bulk form. Even though the CDW transition temperature (T) in CsVSb thin flakes is still monotonically suppressed under pressure and totally vanishes at P=1.83 GPa similar to the bulk, the superconducting transition temperature (T) shows an initial decrease and consequent increase up to its maximum 8.03 K at P, in sharp contrast with the M-shaped double domes in the bulk CsVSb. Our results suggest the important role of reduced dimensionality on the CDW state and its interplay with the SC, offering a new perspective to explore the exotic nature of CsVSb.
7 pages, 5 figures
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