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用于增强光学响应的超材料及其在太赫兹波主动控制中的应用。

Metamaterials for Enhanced Optical Responses and their Application to Active Control of Terahertz Waves.

作者信息

Lee Seojoo, Baek Soojeong, Kim Teun-Teun, Cho Hyukjoon, Lee Sangha, Kang Ji-Hun, Min Bumki

机构信息

Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.

Sungkyunkwan University (SKKU), Suwon, 16419, Republic of Korea.

出版信息

Adv Mater. 2020 Sep;32(35):e2000250. doi: 10.1002/adma.202000250. Epub 2020 Mar 18.

DOI:10.1002/adma.202000250
PMID:32187763
Abstract

Metamaterials, artificially constructed structures that mimic lattices in natural materials, have made numerous contributions to the development of unconventional optical devices. With an increasing demand for more diverse functionalities, terahertz (THz) metamaterials are also expanding their domain, from the realm of mere passive devices to the broader area where functionalized active THz devices are particularly required. A brief review on THz metamaterials is given with a focus on research conducted in the authors' group. The first part is centered on enhanced THz optical responses from tightly coupled meta-atom structures, such as high refractive index, enhanced optical activity, anomalous wavelength scaling, large phase retardation, and nondispersive polarization rotation. Next, electrically gated graphene metamaterials are reviewed with an emphasis on the functionalization of enhanced THz optical responses. Finally, the linear frequency conversion of THz waves in a rapidly time-variant THz metamaterial is briefly discussed in the more general context of spatiotemporal control of light.

摘要

超材料是人工构建的结构,能够模仿天然材料中的晶格,它对非常规光学器件的发展做出了诸多贡献。随着对更多样化功能的需求不断增加,太赫兹(THz)超材料也在拓展其领域,从单纯的无源器件领域扩展到对功能化有源太赫兹器件有特别需求的更广阔领域。本文对太赫兹超材料进行简要综述,重点介绍作者团队开展的研究。第一部分聚焦于紧密耦合的元原子结构增强的太赫兹光学响应,如高折射率、增强的光学活性、异常波长缩放、大相位延迟和非色散偏振旋转。接下来,对电门控石墨烯超材料进行综述,重点是增强太赫兹光学响应的功能化。最后,在更一般的光时空控制背景下,简要讨论了快速时变太赫兹超材料中太赫兹波的线性频率转换。

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