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光子超材料吸收体:形态工程与跨学科应用

Photonic Metamaterial Absorbers: Morphology Engineering and Interdisciplinary Applications.

作者信息

Feng Lei, Huo Pengcheng, Liang Yuzhang, Xu Ting

机构信息

National Laboratory of Solid-State Microstructures, College of Engineering and Applied Sciences and Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing, 210093, China.

出版信息

Adv Mater. 2020 Jul;32(27):e1903787. doi: 10.1002/adma.201903787. Epub 2019 Sep 30.

Abstract

Recent advances in nanofabrication technologies have spurred many breakthroughs in the field of photonic metamaterials that provide efficient ways of manipulating light-matter interaction at subwavelength scales. As one of the most important applications, photonic metamaterials can be used to implement novel optical absorbers. First the morphology engineering of various photonic metamaterial absorbers is discussed, which is highly associated with impendence matching conditions and resonance modes of the absorbers, thus directly determines their absorption efficiency, operational bandwidth, incident angle, and polarization dependence. Then, the recent achievements of various interdisciplinary applications based on photonic metamaterial absorbers, including structural color generation, ultrasensitive optical sensing, solar steam generation, and highly responsive photodetection, are reviewed. This report is expected to provide an overview and vision for the future development of photonic metamaterial absorbers and their applications in novel nanophotonic systems.

摘要

纳米制造技术的最新进展推动了光子超材料领域的许多突破,这些突破提供了在亚波长尺度上操纵光与物质相互作用的有效方法。作为最重要的应用之一,光子超材料可用于实现新型光学吸收体。首先讨论了各种光子超材料吸收体的形态工程,这与吸收体的阻抗匹配条件和共振模式高度相关,从而直接决定了它们的吸收效率、工作带宽、入射角和偏振依赖性。然后,综述了基于光子超材料吸收体的各种跨学科应用的最新成果,包括结构色生成、超灵敏光学传感、太阳能蒸汽生成和高响应光探测。本报告有望为光子超材料吸收体的未来发展及其在新型纳米光子系统中的应用提供概述和展望。

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