论文标题

拓扑光子晶体:物理,设计和应用

Topological photonic crystals: physics, designs and applications

论文作者

Tang, Guo-Jing, He, Xin-Tao, Shi, Fu-Long, Liu, Jian-Wei, Chen, Xiao-Dong, Dong, Jian-Wen

论文摘要

拓扑光子学的最新研究不仅提出并实现了新型的拓扑现象,例如单向宽带繁殖和稳健的光传输,而且还设计和制造的具有高性能指数的光子设备,这些指数易于制造错误,例如缺陷或疾病。光子晶体是具有良好光场限制和多个自由度的优势的周期性光学结构,为控制光流提供了强大的平台。通过在相互空间中定义的拓扑结构,光子晶体已被广泛用于揭示光的不同拓扑阶段,并展示了拓扑光子功能。在这篇综述中,我们介绍具有不同维度,模型和拓扑阶段的拓扑光子晶体的物理学。引入了拓扑光子晶体的设计方法。此外,我们回顾了拓扑光子晶体在被动和活性光子学中的应用。这些研究铺平了在实用光子设备中应用拓扑光子晶体的方式。

The recent research of topological photonics has not only proposed and realized novel topological phenomena such as one-way broadband propagation and robust transport of light, but also designed and fabricated photonic devices with high-performance indexes which are immune to fabrication errors such as defects or disorders. Photonic crystals, which are periodic optical structures with the advantages of good light field confinement and multiple adjusting degrees of freedom, provide a powerful platform to control the flow of light. With the topology defined in the reciprocal space, photonic crystals have been widely used to reveal different topological phases of light and demonstrate topological photonic functionalities. In this review, we present the physics of topological photonic crystals with different dimensions, models and topological phases. The design methods of topological photonic crystals are introduced. Furthermore, we review the applications of topological photonic crystals in passive and active photonics. These researches pave the way of applying topological photonic crystals in practical photonic devices.

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