Wei Minggui, Yang Quanlong, Zhang Xueqian, Li Yanfeng, Gu Jianqiang, Han Jiaguang, Zhang Weili
Opt Express. 2017 Jul 10;25(14):15635-15642. doi: 10.1364/OE.25.015635.
Ultrathin metasurfaces with local phase compensation deliver new schemes to cloaking devices. Here, a large-scale carpet cloak consisting of an ultrathin metasurface is demonstrated numerically and experimentally in the terahertz regime. The proposed carpet cloak is designed based on discontinuous-phase metallic resonators fabricated on a polyimide substrate, offering a wide range of reflection phase variations and an excellent wavefront manipulation along the edges of the bump. The invisibility is verified when the cloak is placed on a reflecting triangular surface (bump). The multi-step discrete phase design method would greatly simplify the design process and is probable to achieve large-dimension cloaks, for applications in radar and antenna systems as a thin, lightweight, and easy-to-fabricate solution for radio and terahertz frequencies.
具有局部相位补偿的超薄超表面为隐形装置提供了新方案。在此,在太赫兹波段通过数值模拟和实验展示了一种由超薄超表面构成的大规模地毯式隐形衣。所提出的地毯式隐形衣基于在聚酰亚胺衬底上制造的不连续相位金属谐振器设计,可提供广泛的反射相位变化,并能沿着凸起边缘实现出色的波前操控。当将隐形衣放置在反射性三角形表面(凸起)上时,隐形效果得到验证。多步离散相位设计方法将极大简化设计过程,并且有可能实现大尺寸隐形衣,可作为无线电和太赫兹频率下的一种薄型、轻质且易于制造的解决方案应用于雷达和天线系统。