Liu Tonghao, Meng Yueyu, Ma Hua, Xu Cuilian, Wang Xiaofeng, Huang Sining, Zhao Shixin, Zheng Lin, Qu Shaobo
Opt Express. 2021 Oct 25;29(22):35891-35899. doi: 10.1364/OE.438206.
Metasurfaces have shown promising applications in radar-infrared compatible stealth because of its superior electromagnetic wave control capabilities, but, to date, the majority of designs still suffer from the defects of large thickness, limited working bandwidth, relatively high infrared emissivity and so on. Here, an exotic phase gradient metasurface (PGM) is proposed to achieve low microwave reflection and low infrared emission concurrently, which has a small thickness of about 0.10λ. The microwave reflection reduction larger than 10 dB in 14-20 GHz is attributed to the anomalous reflection for arbitrary LP incident waves, and the infrared emissivity less than 0.28 from 3 to 14 µm is due to the indium-tin-oxide (ITO) with low infrared emissivity and high filling ratio. Also, the designed PGM can also realize beam deflection for orthogonal CP waves because of the meta-atoms' isotropic characteristics. Our methodology is fully verified by numerous simulations and experiments and may open a new avenue for radar-infrared compatible stealth research.
超表面因其卓越的电磁波控制能力在雷达 - 红外兼容隐身方面展现出了广阔的应用前景,但迄今为止,大多数设计仍存在厚度大、工作带宽有限、红外发射率相对较高等缺陷。在此,提出了一种奇异的相位梯度超表面(PGM)以同时实现低微波反射和低红外发射,其厚度约为0.10λ,非常小。在14 - 20 GHz频段内,微波反射降低超过10 dB归因于任意线性极化(LP)入射波的异常反射,而在3至14 µm范围内红外发射率小于0.28则是由于具有低红外发射率和高填充率的铟锡氧化物(ITO)。此外,由于超原子的各向同性特性,所设计的PGM还能实现正交圆极化(CP)波的波束偏转。我们的方法通过大量的模拟和实验得到了充分验证,可能为雷达 - 红外兼容隐身研究开辟一条新途径。