论文标题
环谐振器中的拓扑阶段:最近的进步和未来前景
Topological phases in ring resonators: recent progress and future prospects
论文作者
论文摘要
拓扑光子学已成为从微波到纳米光子学设计的电磁系统设计的新型范式。迄今为止的研究主要集中在基本概念的演示上,例如非股展和保护侵害制造障碍的波浪。向前迈进,迫切需要确定拓扑设计可以导致设备性能有用的应用程序。在这里,我们回顾了拓扑光子学对基于环谐振器的系统的应用,包括一维谐振器阵列以及动态调节的谐振器。我们评估了潜在的应用,例如量子光的产生,障碍延迟线和光学隔离,以及未来的研究方向和需要解决的开放问题。
Topological photonics has emerged as a novel paradigm for the design of electromagnetic systems from microwaves to nanophotonics. Studies to date have largely focused on the demonstration of fundamental concepts, such as non-reciprocity and waveguiding protected against fabrication disorder. Moving forward, there is a pressing need to identify applications where topological designs can lead to useful improvements in device performance. Here we review applications of topological photonics to ring resonator-based systems, including one- and two-dimensional resonator arrays, and dynamically-modulated resonators. We evaluate potential applications such as quantum light generation, disorder-robust delay lines, and optical isolation, as well as future research directions and open problems that need to be addressed.