论文标题
原子线缺陷和单层Fe(TE,SE)高温超导体中的零能量端状态
Atomic line defects and zero-energy end states in monolayer Fe(Te,Se) high-temperature superconductors
论文作者
论文摘要
已经提出,Majorana零能量结合状态(ZEBSS)存在于一维Rashba纳米线的末端,该纳米线接近与外部磁场引起的Zeeman场中的S波超导体耦合。此类混合结构一直是寻找非阿布莱亚主要零模式(MZM)的中心平台。在这里,我们报告了ZEBS的发现,同时出现在单一原子线缺陷的每一端中,在基于单层铁的高温超导体FETE0.5SE0.5胶片上生长在SRTIO3(001)底物上。 ZEBS的光谱特性,包括温度和隧道屏障依赖性,以及它们由耦合在不同长度的线路缺陷上引起的融合,并且与MZMS相符。这些观察结果表明,在二维S波超导体中,在原子线缺陷的末端实现了拓扑冲击缺陷,该缺陷可以容纳沿链条沿链的时间反向对称性保护的Kramers对MZM。我们的发现揭示了二维超导体FETE0.5SE0.5单层膜中史无前例的拓扑线缺陷激发,并为在单个材料和零外部磁场下在较高的工作温度下产生较高的工作温度的拓扑零能激励提供了有利的平台。
Majorana zero-energy bound states (ZEBSs) have been proposed to exist at the ends of one-dimensional Rashba nanowires proximity-coupled to an s-wave superconductor in an external magnetic field induced Zeeman field. Such hybrid structures have been a central platform in the search for non-Abelian Majorana zero modes (MZMs) toward fault-tolerant topological quantum computing. Here we report the discovery of ZEBSs simultaneously appearing at each end of a one-dimensional atomic line defect in monolayer iron-based high-temperature superconductor FeTe0.5Se0.5 films grown on SrTiO3(001) substrates. The spectroscopic properties of the ZEBSs, including the temperature and tunneling barrier dependences, as well as their fusion induced by coupling on line defects of different lengths are found to be robust and consistent with those of the MZMs. These observations suggest a realization of topological Shockley defects at the ends of an atomic line defect in a two-dimensional s-wave superconductor that can host a Kramers pair of MZMs protected by time-reversal symmetry along the chain. Our findings reveal an unprecedented class of topological line defect excitations in two-dimensional superconductor FeTe0.5Se0.5 monolayer films and offer an advantageous platform for generating topological zero-energy excitations at higher operating temperatures, in a single material, and under zero external magnetic field.