论文标题

单层FE(SE,TE)中的各向异性间隙结构和符号逆转对称性

Anisotropic gap structure and sign reversal symmetry in monolayer Fe(Se,Te)

论文作者

Li, Yu, Shen, Dingyu, Kreisel, Andreas, Chen, Cheng, Wei, Tianheng, Xu, Xiaotong, Wang, Jian

论文摘要

基于铁的超导体是揭示非常规超导性和潜在拓扑超导性的谜的理想平台。其中,提议的单层Fe(SE,TE)/SRTIO3(001)是拓扑非平地的,在两个维度极限下显示了界面增强的高温超导性。但是,关于单层Fe(SE,TE)膜的超导配对机理的实验研究仍然有限。在这里,通过测量单层Fe(SE,TE)/SRTIO3(001)中的准粒子干扰,我们报告了大型超导间隙的各向异性结构的观察以及在不同电子口袋上的超导间隙的符号变化。结果与由自旋波动驱动的“键合 - 抗抗反键” S+波配对对称性与自旋轨道耦合驱动。我们的工作不仅对于铁基超导体中的统一超导形式主义具有基本意义,而且还可以理解高温超导体中拓扑超导性。

The iron-based superconductors are an ideal platform to reveal the enigma of the unconventional superconductivity and potential topological superconductivity. Among them, the monolayer Fe(Se,Te)/SrTiO3(001), which is proposed to be topological nontrivial, shows interface-enhanced high-temperature superconductivity in the two dimensional limit. However, the experimental studies on the superconducting pairing mechanism of monolayer Fe(Se,Te) films are still limited. Here, by measuring quasiparticle interference in monolayer Fe(Se,Te)/SrTiO3(001), we report the observation of the anisotropic structure of the large superconducting gap and the sign change of the superconducting gap on different electron pockets. The results are well consistent with the 'bonding-antibonding' s+- wave pairing symmetry driven by spin fluctuations in conjunction with spin-orbit coupling. Our work is of basic significance not only for a unified superconducting formalism in the iron-based superconductors, but also for understanding of topological superconductivity in high-temperature superconductors.

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