Yang Jia Ji, Cheng Yong Zhi, Ge Chen Chen, Gong Rong Zhou
School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China.
School of Information Science and Engineering, Wuhan University of Science and Technology, Wuhan 430081, China.
Materials (Basel). 2018 Apr 19;11(4):626. doi: 10.3390/ma11040626.
A class of linear polarization conversion coding metasurfaces (MSs) based on a metal cut-wire structure is proposed, which can be applied to the reduction properties of radar cross section (RCS). We firstly present a hypothesis based on the principle of planar array theory, and then verify the RCS reduction characteristics using linear polarization conversion coding MSs by simulations and experiments. The simulated results show that in the frequency range of 6⁻14 GHz, the linear polarization conversion ratio reaches a maximum value of 90%, which is in good agreement with the theoretical predictions. For normal incident - and -polarized waves, RCS reduction of designed coding MSs 01/01 and 01/10 is essentially more than 10 dB in the above-mentioned frequency range. We prepare and measure the 01/10 coding MS sample, and find that the experimental results in terms of reflectance and RCS reduction are in good agreement with the simulated ones under normal incidence. In addition, under oblique incidence, RCS reduction is suppressed as the angle of incidence increases, but still exhibits RCS reduction effects in a certain frequency range. The designed MS is expected to have valuable potential in applications for stealth field technology.
提出了一类基于金属切割线结构的线性极化转换编码超表面(MSs),其可应用于雷达散射截面(RCS)缩减特性。我们首先基于平面阵列理论原理提出一个假设,然后通过仿真和实验使用线性极化转换编码超表面验证RCS缩减特性。仿真结果表明,在6⁻14 GHz频率范围内,线性极化转换率达到最大值90%,与理论预测结果吻合良好。对于垂直入射的-极化波,在上述频率范围内,所设计的编码超表面01/01和01/10的RCS缩减基本超过10 dB。我们制备并测量了01/10编码超表面样品,发现在垂直入射情况下,反射率和RCS缩减方面的实验结果与仿真结果吻合良好。此外,在斜入射情况下,随着入射角增大,RCS缩减受到抑制,但在一定频率范围内仍表现出RCS缩减效果。所设计的超表面有望在隐身场技术应用中具有重要潜在价值。