Aeronautics and Astronautics, University of Washington, Seattle, WA, 98195-2400, USA.
Departamento de Física de la Materia Condensada, Universidad Autónoma de Madrid, Madrid, 28049, Spain.
Adv Mater. 2019 Dec;31(51):e1904386. doi: 10.1002/adma.201904386. Epub 2019 Nov 4.
The discovery of topologically nontrivial electronic systems has opened a new age in condensed matter research. From topological insulators to topological superconductors and Weyl semimetals, it is now understood that some of the most remarkable and robust phases in electronic systems (e.g., quantum Hall or anomalous quantum Hall) are the result of topological protection. These powerful ideas have recently begun to be explored also in bosonic systems. Topologically protected acoustic, mechanical, and optical edge states have been demonstrated in a number of systems that recreate the requisite topological conditions. Such states that propagate without backscattering could find important applications in communications and energy technologies. Here, a topologically bound mechanical state, a different class of nonpropagating protected state that cannot be destroyed by local perturbations, is demonstrated. It is in particular a mechanical analogue of the well-known Majorana bound states (MBSs) of electronic topological superconductor systems. The topological binding is implemented by creating a Kekulé distortion vortex on a 2D mechanical honeycomb superlattice that can be mapped to a magnetic flux vortex in a topological superconductor.
拓扑非平凡电子系统的发现开启了凝聚态研究的新纪元。从拓扑绝缘体到拓扑超导体和外尔半金属,人们现在已经理解到,电子系统中一些最显著和最稳定的相(例如量子霍尔或反常量子霍尔)是拓扑保护的结果。这些强大的理念最近也开始在玻色子系统中得到探索。在许多重现必要拓扑条件的系统中,已经演示了拓扑保护的声、机械和光学边缘态。这些无背散射传播的态可能在通信和能源技术中找到重要的应用。在这里,展示了一种拓扑束缚的机械态,这是一种无法被局部扰动破坏的不同类别的非传播保护态。它特别像是电子拓扑超导体系统中众所周知的马约拉纳束缚态 (MBS) 的机械类比。拓扑束缚是通过在二维机械蜂窝超晶格上创建一个凯库勒扭曲涡旋来实现的,该涡旋可以映射到拓扑超导体中的磁通涡旋。