Qiu Lina, Xiao Gaobiao, Kong Xianghong, Xiong Can
Opt Express. 2019 Jul 22;27(15):21226-21238. doi: 10.1364/OE.27.021226.
In this paper, a novel composite metasurface (MS) with diffuse scattering and absorbing characteristics is proposed to reduce the radar cross section (RCS) of a metal target in a broad band. The combination of absorption and diffusion is realized based on lossy Pancharatnam-Berry (PB) phase particles. The units are arranged according to a coding sequence which is obtained by an optimization algorithm based on simulated annealing algorithm. Simulation results show that the MS obtained based on the optimized coding sequence is insensitive to polarization. Due to the combination of absorption and diffusion, the MS has good performance in both monostatic and bistatic scenarios. Finally, the proposed MS is fabricated and measured, and the experimental results are in good agreement with simulation results. A 10 dB backward reflection reduction can be achieved from 21GHz to 38GHz and a 15 dB backward reflection reduction can be achieved from 22GHz to 35GHz under normal incidence. Furthermore, the MS has good performance under large angle (<45°) incidence.
本文提出了一种具有漫散射和吸收特性的新型复合超表面(MS),以在宽带内降低金属目标的雷达散射截面(RCS)。基于有损潘查拉特纳姆-贝里(PB)相位粒子实现了吸收与散射的结合。这些单元根据基于模拟退火算法的优化算法获得的编码序列进行排列。仿真结果表明,基于优化编码序列获得的超表面对极化不敏感。由于吸收和散射的结合,该超表面在单站和双站场景中均具有良好的性能。最后,制作并测量了所提出的超表面,实验结果与仿真结果吻合良好。在垂直入射条件下,从21GHz到38GHz可实现10dB的后向反射降低,从22GHz到35GHz可实现15dB的后向反射降低。此外,该超表面在大角度(<45°)入射时也具有良好的性能。