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具有超色散功能的超宽带太赫兹隐身衣的实验实现

Experimental Realization of a Superdispersion-Enabled Ultrabroadband Terahertz Cloak.

作者信息

Cai Tong, Zheng Bin, Lou Jing, Shen Lian, Yang Yihao, Tang Shiwei, Li Erping, Qian Chao, Chen Hongsheng

机构信息

Interdisciplinary Center for Quantum Information, State Key Laboratory of Modern Optical Instrumentation, ZJU-Hangzhou Global Scientific and Technological Innovation Center, Zhejiang University, Hangzhou, 310027, P. R. China.

Air and Missile Defend College, Air Force Engineering University, Xi'an, 710051, P. R. China.

出版信息

Adv Mater. 2022 Sep;34(38):e2205053. doi: 10.1002/adma.202205053. Epub 2022 Aug 22.

Abstract

Invisibility has been a topic of long-standing interest owing to the advent of metamaterials and transformation optics, but still faces open challenges after its tremendous development in recent decades. One of the big challenges is the narrow bandwidth, as the realization of an invisibility cloak is usually based on a metamaterial-an artificial composite material composed of subwavelength resonator structures that are always associated with dispersion. Different from previous works that have tried to eliminate the material dispersion to enhance the bandwidth of an invisibility cloak, here, it is found that by judiciously harnessing the material dispersion, the bandwidth of the cloak can still be significantly increased. Interestingly, the material dispersion does not violate the law of causality. As a proof of concept, an ultrabroadband terahertz (THz) carpet cloak is experimentally demonstrated through an array of superdispersive microparticles, rendering the target object invisible to detection by both time- and frequency-domain wideband systems. The work presents a feasible invisibility strategy that is closer to practical applications and may pave a brand-new way for the development of dispersion-dominated ultrabroadband metadevices.

摘要

由于超材料和变换光学的出现,隐身一直是一个长期受到关注的话题,但在近几十年取得巨大发展之后,它仍然面临着尚未解决的挑战。其中一个重大挑战是带宽狭窄,因为隐身斗篷的实现通常基于超材料——一种由亚波长谐振器结构组成的人工复合材料,而这些结构总是与色散相关。与之前试图消除材料色散以提高隐身斗篷带宽的工作不同,本文发现,通过巧妙地利用材料色散,仍然可以显著增加隐身斗篷的带宽。有趣的是,材料色散并不违反因果律。作为概念验证,通过超色散微粒阵列在实验上展示了一种超宽带太赫兹(THz)地毯式隐身斗篷,使目标物体在时域和频域宽带系统检测下均不可见。这项工作提出了一种更接近实际应用的可行隐身策略,并可能为色散主导的超宽带超材料器件的发展开辟一条全新的道路。

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