论文标题

基于元表面的光子时间晶体实现

Metasurface-Based Realization of Photonic Time Crystals

论文作者

Wang, Xuchen, Mirmoosa, Mohammad Sajjad, Asadchy, Viktar S., Rockstuhl, Carsten, Fan, Shanhui, Tretyakov, Sergei A.

论文摘要

光子时间晶体是人造物质,其电磁特性在空间中是均匀的,但会定期变化。由于对体积样品中材料特性的均匀调节的严格要求,这种材料的合成和对物理学的实验观察仍然非常具有挑战性。在这项工作中,我们将光子时间晶体的概念扩展到二维人造结构 - 元整形。我们证明,随着时间变化的跨度不仅保留了体积光子时间晶体的关键物理特性,尽管它们具有简单的拓扑结构,而且还保留了由表面和自由空间电磁波共享的常见动量带镜。基于微波元面设计,我们通过实验确认了动量带隙内的指数波放大,以及通过外部(自由空间)激发探测带隙物理的可能性。拟议的元表面是实现新兴的光子时空晶体的简单材料平台,并作为在未来无线通信中放大地表信号的现实系统。

Photonic time crystals are artificial materials whose electromagnetic properties are uniform in space but periodically vary in time. The synthesis of such materials and experimental observation of their physics remain very challenging due to the stringent requirement for uniform modulation of material properties in volumetric samples. In this work, we extend the concept of photonic time crystals to two-dimensional artificial structures -- metasurfaces. We demonstrate that time-varying metasurfaces not only preserve key physical properties of volumetric photonic time crystals despite their simpler topology but also host common momentum bandgaps shared by both surface and free-space electromagnetic waves. Based on a microwave metasurface design, we experimentally confirmed the exponential wave amplification inside a momentum bandgap as well as the possibility to probe bandgap physics by external (free-space) excitations. The proposed metasurface serves as a straightforward material platform for realizing emerging photonic space-time crystals and as a realistic system for the amplification of surface-wave signals in future wireless communications.

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