Departamento de Física de la Materia Condensada, CSIC-Universidad de Zaragoza, Zaragoza E-50009, Spain.
Institute of Theoretical Physics, Faculty of Physics, University of Warsaw, ul. Pasteura 5, 02-093 Warsaw, Poland.
Phys Rev Lett. 2019 Nov 22;123(21):217401. doi: 10.1103/PhysRevLett.123.217401.
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstrating how strong light-matter coupling leads to a breakdown of the bulk-edge correspondence. We observe an ostensibly topologically nontrivial phase, which unexpectedly does not exhibit edge states. Our findings are in direct contrast to topological tight-binding models with electrons, such as the celebrated Su-Schrieffer-Heeger (SSH) model. We present a theory of collective polaritonic excitations in a dimerized chain of oscillating dipoles embedded inside a photonic cavity. The added degree of freedom from the cavity photons upgrades the system from a typical SSH SU(2) model into a largely unexplored SU(3) model. Tuning the light-matter coupling strength by changing the cavity size reveals three critical points in parameter space: when the polariton band gap closes, when the Zak phase changes from being trivial to nontrivial, and when the edge state is lost. These three critical points do not coincide, and thus the Zak phase is no longer an indicator of the presence of edge states. Our discoveries demonstrate some remarkable properties of topological matter when strongly coupled to light, and could be important for the growing field of topological nanophotonics.
我们研究了腔内波导中极化激元的非常规拓扑相,展示了强光物质耦合如何导致体边对应关系的破裂。我们观察到一个表面上是非平凡的拓扑相,但它出人意料地没有表现出边缘态。我们的发现与电子的拓扑紧束缚模型(如著名的 Su-Schrieffer-Heeger (SSH) 模型)直接相反。我们提出了一个在光子腔中嵌入的振荡偶极子二聚体中的集体极化激元激发的理论。腔光子增加的自由度将系统从典型的 SSH SU(2)模型升级为一个很大程度上未被探索的 SU(3)模型。通过改变腔的大小来调整光物质耦合强度,揭示了参数空间中的三个临界点:当极化激元能带隙关闭时,当 Zak 相位从平凡变为非平凡时,以及当边缘态丢失时。这三个临界点不重合,因此 Zak 相位不再是边缘态存在的指标。我们的发现展示了强耦合光下拓扑物质的一些显著性质,这对于拓扑纳米光子学这一日益发展的领域可能非常重要。