论文标题
在声学晶体中的非热途径通往高阶拓扑的途径
Non-Hermitian route to higher-order topology in an acoustic crystal
论文作者
论文摘要
物质的拓扑阶段是根据其Hermitian Hamiltonians分类的,其实用值的分散体以及正交本征形成了非平凡的拓扑结构。在最近发现的高阶拓扑绝缘子(TIS)中,大量拓扑甚至可以表现出层次的特征,从而导致拓扑角状态,如许多光子和声学人造物质所示。自然,由于其非富特性,拓扑定义中省略了这些人造物质的内在损失。实际上,损失的存在通常被认为对拓扑角态有害。在这里,我们报告了声学晶体中高阶Ti的实验实现,该晶体的非平凡拓扑是由故意引入的损失引起的。通过局部声学测量值,我们确定了一个拓扑散装带隙,该带有散布的边缘状态和间隙角状态,作为等级高阶拓扑的标志性标志。我们的工作建立了通往高阶拓扑的非热途径,并为探索各种异国情调的非热性引起的拓扑阶段铺平了道路。
Topological phases of matter are classified based on their Hermitian Hamiltonians, whose real-valued dispersions together with orthogonal eigenstates form nontrivial topology. In the recently discovered higher-order topological insulators (TIs), the bulk topology can even exhibit hierarchical features, leading to topological corner states, as demonstrated in many photonic and acoustic artificial materials. Naturally, the intrinsic loss in these artificial materials has been omitted in the topology definition, due to its non-Hermitian nature; in practice, the presence of loss is generally considered harmful to the topological corner states. Here, we report the experimental realization of a higher-order TI in an acoustic crystal, whose nontrivial topology is induced by deliberately introduced losses. With local acoustic measurements, we identify a topological bulk bandgap that is populated with gapped edge states and in-gap corner states, as the hallmark signatures of hierarchical higher-order topology. Our work establishes the non-Hermitian route to higher-order topology, and paves the way to exploring various exotic non-Hermiticity-induced topological phases.