Rahman Saeed Ur, Deng Hai, Khan Muhammad Irshad, Ullah Naveed, Uddin Zaki
Opt Express. 2023 Aug 14;31(17):27880-27893. doi: 10.1364/OE.492751.
This paper presents an innovative design that combines the functionalities of a polarization convertor and an electromagnetic (EM) radiator into a single integrated metasurface. The metasurface consists of two identical metallic split-rings, a circular-shaped patch structure, a dielectric layer, and a reflective metallic ground. The polarization convertor component efficiently converts waves polarized in the x- or y-direction into cross-polarized waves within a frequency range of 8-13 GHz. It exhibits wideband resonances and achieves a high conversion efficiency. In the context of low-observable platforms, traditional high-gain antennas often suffer from a large radar cross section (RCS). To overcome this challenge, the same metasurface is utilized for EM radiation, enabling a high gain of 16.5 dBi while maintaining a low RCS. This is accomplished by strategically rotating the double-slotted metallic split-rings at 90 , 180 , and 270 in four distinct regions. Through this rotation, destructive interference cancellation occurs, resulting in wideband reduction of the RCS. Experimental results validate the effectiveness of the proposed metasurface in serving both applications, namely polarization conversion and EM radiation.
本文提出了一种创新设计,将偏振转换器和电磁(EM)辐射器的功能集成到一个单一的超表面中。该超表面由两个相同的金属裂环、一个圆形贴片结构、一个介电层和一个反射金属接地组成。偏振转换器组件在8-13GHz频率范围内有效地将在x或y方向偏振的波转换为交叉偏振波。它表现出宽带共振并实现了高转换效率。在低可观测平台的背景下,传统的高增益天线往往具有较大的雷达散射截面(RCS)。为了克服这一挑战,同一超表面用于EM辐射,在保持低RCS的同时实现了16.5dBi的高增益。这是通过在四个不同区域将双槽金属裂环分别旋转90°、180°和270°来实现的。通过这种旋转,发生相消干涉,导致RCS的宽带降低。实验结果验证了所提出的超表面在偏振转换和EM辐射这两种应用中的有效性。