Kavli Institute of Nanoscience, Delft University of Technology, Delft, GA 2600, The Netherlands.
Solid State Physics Laboratory, ETH Zürich, Zürich 8093, Switzerland.
Nat Nanotechnol. 2015 Jul;10(7):593-7. doi: 10.1038/nnano.2015.86. Epub 2015 May 11.
Topological superconductivity is an exotic state of matter that supports Majorana zero-modes, which have been predicted to occur in the surface states of three-dimensional systems, in the edge states of two-dimensional systems, and in one-dimensional wires. Localized Majorana zero-modes obey non-Abelian exchange statistics, making them interesting building blocks for topological quantum computing. Here, we report superconductivity induced in the edge modes of semiconducting InAs/GaSb quantum wells, a two-dimensional topological insulator. Using superconducting quantum interference we demonstrate gate-tuning between edge-dominated and bulk-dominated regimes of superconducting transport. The edge-dominated regime arises only under conditions of high-bulk resistivity, which we associate with the two-dimensional topological phase. These experiments establish InAs/GaSb as a promising platform for the confinement of Majoranas into localized states, enabling future investigations of non-Abelian statistics.
拓扑超导是一种奇异的物质状态,支持马约拉纳零模,这些零模被预测存在于三维系统的表面态、二维系统的边缘态和一维线中。局域的马约拉纳零模服从非阿贝尔交换统计,这使得它们成为拓扑量子计算的有趣构建块。在这里,我们报告了在半导体 InAs/GaSb 量子阱的边缘模式中诱导的超导性,这是一种二维拓扑绝缘体。我们使用超导量子干涉来证明超导输运的边缘主导和体主导模式之间的栅极调谐。边缘主导模式仅在高体电阻率的条件下出现,我们将其与二维拓扑相联系。这些实验确立了 InAs/GaSb 作为将马约拉纳束缚到局域态的有前途的平台,从而能够对非阿贝尔统计进行未来的研究。