论文标题

从二维光子晶体结构的完整拓扑状态集的激光

Lasing from complete set of topological states in two dimensional photonic crystal structure

论文作者

Han, Changhyun, Kang, Minsu, Jeon, Heonsu

论文摘要

最近,拓扑设计的光子结构引起了极大的关注,因为它们的本征态可能对具有前所未有的功能和鲁棒性的纳米光子设备提供了对光子操纵的新见解和非常规的途径。本文中,我们介绍了所有层次特征状态的激光动作,这些动作可能存在于拓扑设计的单个二维(2D)光子晶体(PHC)平台中:2D体积,一维边缘和零维角状态。特别是,多个拓扑特征态以层次的方式生成,没有散装多重矩。拓扑PHC结构的单位电池是四个四聚体,该四聚体由四个相同的空气孔组成,该空气孔穿孔到Ingaasp多量子 - 孔 - 孔表层板中。拓扑非平凡的PHC结构的正方形区域被拓扑琐碎的对应物包围,从而导致一个散装的多维本征态,四个侧边缘和边界内和边界内的四个角落。在空间上解析的光激发会自发地导致所有九个分层拓扑状态的激光作用。我们的实验发现可能会深入了解复杂的下一代纳米光量设备和强大的集成平台的发展。

Recently, topologically engineered photonic structures have garnered significant attention as their eigenstates may offer a new insight on photon manipulation and an unconventional route for nanophotonic devices with unprecedented functionalities and robustness. Herein, we present lasing actions at all hierarchical eigenstates that can exist in a topologically designed single two-dimensional (2D) photonic crystal (PhC) platform: 2D bulk, one-dimensional edge, and zero-dimensional corner states. In particular, multiple topological eigenstates are generated in a hierarchical manner with no bulk multipole moment. The unit cell of the topological PhC structure is a tetramer composed of four identical air holes perforated into an InGaAsP multiple-quantum-well epilayer slab. A square area of a topologically nontrivial PhC structure is surrounded by a topologically trivial counterpart, resulting in multidimensional eigenstates of one bulk, four side edges, and four corners within and at the boundaries. Spatially resolved optical excitation spontaneously results in lasing actions at all nine hierarchical topological states. Our experimental findings may provide insight into the development of sophisticated next-generation nanophotonic devices and robust integration platforms.

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