Cao Lu, Liu Wenyao, Li Geng, Dai Guangyang, Zheng Qi, Wang Yuxin, Jiang Kun, Zhu Shiyu, Huang Li, Kong Lingyuan, Yang Fazhi, Wang Xiancheng, Zhou Wu, Lin Xiao, Hu Jiangping, Jin Changqing, Ding Hong, Gao Hong-Jun
Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
School of Physical Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China.
Nat Commun. 2021 Nov 2;12(1):6312. doi: 10.1038/s41467-021-26708-8.
For iron-based superconductors, the phase diagrams under pressure or strain exhibit emergent phenomena between unconventional superconductivity and other electronic orders, varying in different systems. As a stoichiometric superconductor, LiFeAs has no structure phase transitions or entangled electronic states, which manifests an ideal platform to explore the pressure or strain effect on unconventional superconductivity. Here, we observe two types of superconducting states controlled by orientations of local wrinkles on the surface of LiFeAs. Using scanning tunneling microscopy/spectroscopy, we find type-I wrinkles enlarge the superconducting gaps and enhance the transition temperature, whereas type-II wrinkles significantly suppress the superconducting gaps. The vortices on wrinkles show a C symmetry, indicating the strain effects on the wrinkles. By statistics, we find that the two types of wrinkles are categorized by their orientations. Our results demonstrate that the local strain effect with different directions can tune the superconducting order parameter of LiFeAs very differently, suggesting that the band shifting induced by directional pressure may play an important role in iron-based superconductivity.
对于铁基超导体,在压力或应变下的相图在非常规超导性和其他电子序之间呈现出不同系统中各不相同的涌现现象。作为一种化学计量比超导体,LiFeAs没有结构相变或纠缠电子态,这使其成为探索压力或应变对非常规超导性影响的理想平台。在此,我们观察到由LiFeAs表面局部褶皱取向控制的两种超导态。利用扫描隧道显微镜/能谱,我们发现I型褶皱增大了超导能隙并提高了转变温度,而II型褶皱则显著抑制超导能隙。褶皱上的涡旋呈现出C对称性,表明应变对褶皱有影响。通过统计,我们发现这两种类型的褶皱按其取向分类。我们的结果表明,不同方向的局部应变效应可以非常不同地调节LiFeAs的超导序参量,这表明定向压力引起的能带移动可能在铁基超导中起重要作用。