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工作于宽带和全极化状态的智能多普勒隐身衣。

Smart Doppler Cloak Operating in Broad Band and Full Polarizations.

作者信息

Zhang Xin Ge, Sun Ya Lun, Yu Qian, Cheng Qiang, Jiang Wei Xiang, Qiu Cheng-Wei, Cui Tie Jun

机构信息

State Key Laboratory of Millimeter Waves, School of Information Science and Engineering, Southeast University, Nanjing, 210096, China.

Department of Electrical and Computer Engineering, National University of Singapore, Singapore, 117583, Singapore.

出版信息

Adv Mater. 2021 Apr;33(17):e2007966. doi: 10.1002/adma.202007966. Epub 2021 Apr 14.

Abstract

Invisibility cloaks, a class of attractive devices that can hide objects from external observers, have become practical reality owing to the advent of metamaterials. In previous cloaking schemes, almost all demonstrated cloaks are time-invariant and are investigated in the system that is motionless, and hence they are limited to hide stationary objects. In addition, the current cloaks are typically static or require manual operation to achieve dynamic cloaking. Here, a smart Doppler cloak operating in broadband and full polarizations is reported, which consists of a time-modulated reflective metasurface and a sensing-feedback time-varying electronic control system. Experimental results show that the smart Doppler cloak is able to respond self-adaptively and rapidly to the ever-changing velocity of moving objects and then cancel different Doppler shifts in real time, without any human intervention. Moreover, the wideband and polarization-insensitive features enable the cloak to be more robust and practical. To illustrate the capabilities of the proposed approach, the smart Doppler cloak is measured in three scenarios with two different groups of linearly-polarized incidences at 3.3 and 4.9 GHz, and one group circularly-polarized incidences at 6.0 GHz, respectively.

摘要

隐身斗篷是一类能够使物体不被外部观察者看到的引人注目的装置,由于超材料的出现,已成为现实。在以往的隐身方案中,几乎所有展示的隐身斗篷都是时不变的,且是在静止的系统中进行研究的,因此它们仅限于隐藏静止物体。此外,当前的隐身斗篷通常是静态的,或者需要手动操作来实现动态隐身。在此,报道了一种工作在宽带和全极化状态下的智能多普勒隐身斗篷,它由一个时间调制反射超表面和一个传感反馈时变电子控制系统组成。实验结果表明,该智能多普勒隐身斗篷能够对移动物体不断变化的速度进行自适应快速响应,进而实时消除不同的多普勒频移,无需任何人工干预。此外,宽带和偏振不敏感特性使该隐身斗篷更具鲁棒性和实用性。为了说明所提方法的能力,分别在三种场景下对智能多普勒隐身斗篷进行了测量,其中两种场景采用了3.3 GHz和4.9 GHz的两组不同线性极化入射,另一种场景采用了6.0 GHz的一组圆极化入射。

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