论文标题

拓扑跨表:从被动到活跃和超越

Topological metasurface: From passive toward active and beyond

论文作者

You, Jian Wei, Lan, Zhihao, Ma, Qian, Gao, Zhen, Yang, Yihao, Gao, Fei, Xiao, Meng, Cui, Tie Jun

论文摘要

元图是次波长结构化薄膜,由单元阵列组成,这些单元阵列可以控制偏振,相位和幅度在亚波长厚度上的光。拓扑光子学的最新发展在设计新功能应用的元信息方面已大大拓宽了视野。在这篇综述中,我们总结了拓扑跨国研究领域的最新进展,首先是从被动和活跃的经典制度的角度,然后是量子制度的。更具体地说,我们首先检查了二维光子系统中的被动拓扑现象,包括时间反转损坏的系统和时间反转的系统。随后,我们采取行动讨论主动拓扑跨境的前沿研究,包括非线性拓扑跨度和可重新配置的拓扑跨度。在概述了古典制度中的拓扑元信息之后,我们展示了如何为量子信息和量子多体物理物理学提供新的平台。最后,我们结论并描述了这个快速发展领域的一些挑战和未来的方向。

Metasurfaces are subwavelength structured thin films consisting of arrays of units that allow the controls of polarization, phase and amplitude of light over a subwavelength thickness. The recent developments in topological photonics have greatly broadened the horizon in designing the metasurfaces for novel functional applications. In this review, we summarize recent progress in the research field of topological metasurfaces, firstly from the perspectives of passive and active in the classical regime, and then in the quantum regime. More specifically, we begin by examining the passive topological phenomena in two-dimensional photonic systems, including both time-reversal broken systems and time-reversal preserved systems. Subsequently, we move to discuss the cutting-edge studies of the active topological metasurfaces, including nonlinear topological metasurfaces and reconfigurable topological metasurfaces. After overviewing the topological metasurfaces in the classical regime, we show how the topological metasurfaces could provide a new platform for quantum information and quantum many-body physics. Finally, we conclude and describe some challenges and future directions of this fast-evolving field.

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