Meng Zhen, Tian Changhui, Xu Cuilian, Wang Jiafu, Li Xinghua, Huang Sining, Fan Qi, Qu Shaobo
Opt Express. 2020 Sep 14;28(19):27774-27784. doi: 10.1364/OE.402326.
In this paper, an optically transparent coding metasurface structure based on indium tin oxide (ITO) thin films with simultaneously low infrared (IR) emissivity and microwave scattering reduction is proposed. To this end, two ITO coding elements which can reflect 0° and 180° phase responses are firstly designed. Based on these two elements, four coding sequences with different scattering patterns are designed. Three of them can realize anomalous reflections and the fourth can realize random diffusion of normal incident electromagnetic (EM) waves. A prototype of the random diffusion coding metasurface was fabricated and measured. The experimental results show that for normal incident EM waves, at least 10dB backward scattering reduction from 3.8GHz to 6.8GHz can be achieved, and the structure is polarization insensitive. The averaged transmittance of visible light through the coding metasurface reaches up to 72.2%. In addition, due to the high occupation ratio of ITO on the outside of the coding metasurface, a low IR emissivity of about 0.275 is obtained. Good consistency between the experiment and simulation results convincingly verifies the coding metasurface. Due to its multispectral compatibility, the proposed coding metasurface may find potential applications in multi-spectral stealth, camouflage, etc.
本文提出了一种基于氧化铟锡(ITO)薄膜的光学透明编码超表面结构,该结构同时具有低红外(IR)发射率和降低微波散射的特性。为此,首先设计了两种能够反射0°和180°相位响应的ITO编码元件。基于这两种元件,设计了四种具有不同散射模式的编码序列。其中三种可以实现异常反射,第四种可以实现正常入射电磁(EM)波的随机扩散。制作并测量了随机扩散编码超表面的原型。实验结果表明,对于正常入射的EM波,在3.8GHz至6.8GHz范围内可实现至少10dB的后向散射降低,并且该结构对偏振不敏感。可见光透过编码超表面的平均透过率高达72.2%。此外,由于ITO在编码超表面外部的占有率较高,获得了约0.275的低红外发射率。实验结果与模拟结果的良好一致性令人信服地验证了该编码超表面。由于其多光谱兼容性,所提出的编码超表面可能在多光谱隐身、伪装等方面找到潜在应用。