论文标题

Skyrmion Lattices中的拓扑超导性

Topological Superconductivity in Skyrmion Lattices

论文作者

Mascot, Eric, Bedow, Jasmin, Graham, Martin, Rachel, Stephan, Morr, Dirk K.

论文摘要

原子操纵和界面工程技术为定制设计拓扑超导体和随后的Majorana零模式提供了一种新颖的方法,这代表了实现拓扑量子计算和基于拓扑的设备的新范式。通过控制其磁性层的复杂结构和超导表面的界面特性,已证明磁铁 - 渗透杂种(MSH)系统在实验上适合于工程拓扑超导性。在这里,我们证明了二维MSH系统包含磁性晶格的晶格提供了控制拓扑阶段出现的前所未有的能力。通过更改可以通过外部磁场实验实现的Skyrmion半径,可以在不同的拓扑超导阶段进行调整,从而探索其独特的特性及其之间的过渡。在这些MSH系统中,约瑟夫森扫描隧道光谱法空间可视化拓扑超导性出现的最关键方面之一,即诱导的自旋三链接相关性的空间结构。

Atomic manipulation and interface engineering techniques have provided a novel approach to custom-designing topological superconductors and the ensuing Majorana zero modes, representing a new paradigm for the realization of topological quantum computing and topology-based devices. Magnet-superconductor hybrid (MSH) systems have proven to be experimentally suitable to engineer topological superconductivity through the control of both the complex structure of its magnetic layer and the interface properties of the superconducting surface. Here, we demonstrate that two-dimensional MSH systems containing a magnetic skyrmion lattice provide an unprecedented ability to control the emergence of topological phases. By changing the skyrmion radius, which can be achieved experimentally through an external magnetic field, one can tune between different topological superconducting phases, allowing one to explore their unique properties and the transitions between them. In these MSH systems, Josephson scanning tunneling spectroscopy spatially visualizes one of the most crucial aspects underlying the emergence of topological superconductivity, the spatial structure of the induced spin-triplet correlations.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源