论文标题
无形光子拓扑绝缘子
Amorphous photonic topological insulator
论文作者
论文摘要
光子拓扑绝缘子(PTI)表现出受拓扑拓扑保护的强大光子边缘状态,类似于拓扑带绝缘子中的电子边缘状态。标准频带理论不适用于物质的非晶阶段,这些阶段是由没有长距离位置顺序的非晶格晶格而形成的,而仅是短距离顺序。除其他有趣的特性外,非晶介质在玻璃状和液相之间表现出过渡,并伴随着短期顺序的巨大变化。在这里,我们实验研究了基于Chern-number PTI的无定形变体。通过调整晶格中的疾病强度,我们证明光子拓扑边缘状态可以在玻璃到液体过渡之前持续到无定形状态。过渡到液态晶格构型后,拓扑边缘状态的签名消失了。拓扑与短距离顺序之间的这种相互作用为新型的非晶体拓扑光子材料铺平了道路。
Photonic topological insulators (PTIs) exhibit robust photonic edge states protected by band topology, similar to electronic edge states in topological band insulators. Standard band theory does not apply to amorphous phases of matter, which are formed by non-crystalline lattices with no long-range positional order but only short-range order. Among other interesting properties, amorphous media exhibit transitions between glassy and liquid phases, accompanied by dramatic changes in short-range order. Here, we experimentally investigate amorphous variants of a Chern-number-based PTI. By tuning the disorder strength in the lattice, we demonstrate that photonic topological edge states can persist into the amorphous regime, prior to the glass-to-liquid transition. After the transition to a liquid-like lattice configuration, the signatures of topological edge states disappear. This interplay between topology and short-range order in amorphous lattices paves the way for new classes of non-crystalline topological photonic materials.