Opt Lett. 2023 Jun 15;48(12):3283-3286. doi: 10.1364/OL.493113.
Topological edge states are a generic feature of topological insulators, and the long-range interactions, which break certain properties of topological edge states, are always non-negligible in real physical systems. In this Letter, we investigate the influence of next-nearest-neighbor (NNN) interactions on the topological properties of the Su-Schrieffer-Heeger (SSH) model by extracting the survival probabilities at the boundary of the photonic lattices. By introducing a series of integrated photonic waveguide arrays with different strengths of long-range interactions, we experimentally observe delocalization transition of light in SSH lattices with nontrivial phase, which is in good agreement with our theoretical predictions. The results indicate that the NNN interactions can significantly affect the edge states, and that the localization of these states can be absent in topologically nontrivial phase. Our work provides an alternative way to investigate the interplay between long-range interactions and localized states, which may stimulate further interest in topological properties in relevant structures.
拓扑边缘态是拓扑绝缘体的一种普遍特征,而在真实物理系统中,破坏拓扑边缘态某些性质的长程相互作用总是不可忽略的。在这篇快报中,我们通过提取光子晶格边界处的幸存概率,研究了次近邻(NNN)相互作用对 Su-Schrieffer-Heeger(SSH)模型拓扑性质的影响。通过引入一系列具有不同长程相互作用强度的集成光子波导阵列,我们实验观察到具有非平凡相位的 SSH 格子中光的非局域化转变,这与我们的理论预测非常吻合。结果表明,NNN 相互作用可以显著影响边缘态,并且在拓扑非平凡相中这些态的局域化可能不存在。我们的工作为研究长程相互作用和局域态之间的相互作用提供了一种替代方法,这可能会激发人们对相关结构中拓扑性质的进一步兴趣。