Palacio-Morales Alexandra, Mascot Eric, Cocklin Sagen, Kim Howon, Rachel Stephan, Morr Dirk K, Wiesendanger Roland
Department of Physics, University of Hamburg, D-20355 Hamburg, Germany.
Department of Physics, University of Illinois at Chicago, 845 W. Taylor St. M/C 273, Chicago, IL, USA.
Sci Adv. 2019 Jul 26;5(7):eaav6600. doi: 10.1126/sciadv.aav6600. eCollection 2019 Jul.
Topological superconductors are predicted to harbor exotic boundary states-Majorana zero-energy modes-whose non-Abelian braiding statistics present a new paradigm for the realization of topological quantum computing. Using low-temperature scanning tunneling spectroscopy, here, we report on the direct real-space visualization of chiral Majorana edge states in a monolayer topological superconductor, a prototypical magnet-superconductor hybrid system composed of nanoscale Fe islands of monoatomic height on a Re(0001)-O(2 × 1) surface. In particular, we demonstrate that interface engineering by an atomically thin oxide layer is crucial for driving the hybrid system into a topologically nontrivial state as confirmed by theoretical calculations of the topological invariant, the Chern number.
理论预测拓扑超导体中存在奇异的边界态——马约拉纳零能模,其非阿贝尔编织统计为实现拓扑量子计算提供了一种新范式。在此,我们利用低温扫描隧道谱,报道了在单层拓扑超导体中手性马约拉纳边缘态的直接实空间可视化,该单层拓扑超导体是一种典型的磁体 - 超导体混合系统,由位于Re(0001)-O(2×1)表面上的单原子高度的纳米级铁岛组成。特别是,我们证明了通过原子级薄的氧化层进行界面工程对于将混合系统驱动到拓扑非平凡态至关重要,这一点已通过拓扑不变量陈数的理论计算得到证实。