Layer-Dependent Superconductivity in Iron-Based Superconductors CsCa 2 Fe 4 As 4 F 2 and CaKFe 4 As 4
作者:Ke Meng, Xu Zhang, Boqin Song, B.Z. Li, Xiangming Kong, Sicheng Huang, Xiaofan Yang, Xiaobo Jin, Yiyuan Wu, Jiaying Nie, Guang‐Han Cao, Shiyan Li · 发表于:Nano Letters · 年份:2024 · DOI:10.1021/acs.nanolett.4c01725 · 被引用次数:6 · 研究领域:Iron-based superconductors research、Physics of Superconductivity and Magnetism、Magnetic and transport properties of perovskites and related materials
In the quasi-two-dimensional superconductor NbSe 2, the superconducting transition temperature ( T c ) is layer-dependent, decreasing by about 60% in the monolayer limit. However, for the extremely anisotropic copper-based high- T c superconductor Bi 2 Sr 2 CaCu 2 O 8+δ (Bi-2212), the T c of the monolayer is almost identical with that of its bulk counterpart. To clarify the effect of dimensionality on superconductivity, here, we successfully fabricate ultrathin flakes of iron-based high- T c superconductors CsCa 2 Fe 4 As 4 F 2 and CaKFe 4 As 4 . It is found that the T c of monolayer CsCa 2 Fe 4 As 4 F 2 (after tuning to the optimal doping by ionic liquid gating) is about 20% lower than that of the bulk crystal, while the T c of three-layer CaKFe 4 As 4 decreases by 46%, showing a more pronounced dimensional effect than that of CsCa 2 Fe 4 As 4 F 2 . By carefully examining their anisotropy and the c -axis coherence length, we reveal the general trend and empirical law of the layer-dependent superconductivity in these quasi-two-dimensional superconductors.