论文标题
光子谷 - 孔元面的腔介导相互作用引起的拓扑转变
Topological transitions induced by cavity-mediated interactions in photonic valley-Hall metasurfaces
论文作者
论文摘要
光的拓扑阶段表现出超出常规光子学领域的独特特性。尤其是在多种光子结构中实现了山谷孔拓扑绝缘子,因为它可以通过破坏某些晶格对称性来容易诱导。但是,山谷 - 切尔恩的数字通常是通过设计固定的,相应的拓扑边缘状态被迫沿固定方向传播。在这里,我们提出了一种机制,可以通过由相互作用的偶极发射器/天线组成的跨膜意外迪拉克点诱导拓扑过渡。对于偶极子的固定排列,我们表明拓扑阶段严重取决于介导偶极 - 偶极相互作用的周围电磁环境。为了访问不同的拓扑阶段,我们将元表面嵌入了空腔波导中,可以通过降低腔宽度来调整从短距离库仑相互作用到远程光子介导的相互作用的显性偶极耦合。这导致拓扑过渡为特征,其特征是山谷切尔尼数字的反转。因此,我们表明可以通过仅修改偶极子嵌入的电磁环境来切换拓扑边缘状态的手性。这种机制可能对其他拓扑阶段(例如光子高阶拓扑绝缘子)具有重要意义。
Topological phases of light exhibit unique properties beyond the realm of conventional photonics. In particular the valley-Hall topological insulator has been realized in a variety of photonic structures because it can be easily induced by breaking certain lattice symmetries. However, the valley-Chern numbers are usually fixed by design and the corresponding topological edge states are forced to propagate in a fixed direction. Here, we propose a mechanism to induce topological transitions via accidental Dirac points in metasurfaces composed of interacting dipole emitters/antennas. For a fixed arrangement of dipoles, we show that the topological phase depends critically on the surrounding electromagnetic environment which mediates the dipole-dipole interactions. To access different topological phases we embed the metasurface inside a cavity waveguide where one can tune the dominant dipolar coupling from short-range Coulomb interactions to long-range photon-mediated interactions by reducing the cavity width; this results in a topological transition characterized by an inversion of the valley-Chern numbers. Consequently, we show that one can switch the chirality of the topological edge states by modifying only the electromagnetic environment in which the dipoles are embedded. This mechanism could have important implications for other topological phases such as photonic higher-order topological insulators.