Jia Yuxiang, Wang Jiafu, Han Yajuan, Zhu Ruichao, Fu Xinmin, Ding Meng, Guo Xiaoming, Meng Yueyu, Wang Jun, Jiang Jinming, Qu Shaobo
Opt Express. 2022 Feb 28;30(5):7110-7123. doi: 10.1364/OE.452180.
Structuring elements of gratings brings more freedom in manipulating diffraction waves, e.g., retroreflection using diffraction orders other than the 0 order. Most retroreflective metagratings (RMs) can achieve retroreflection only under one particular direction, limiting their applications. In this paper, we propose a quasi-omnidirectional RM based on wave-vector reversion for TE-polarized waves. The metagrating element is composed of four rotationally-symmetric sub-elements, which is composed of one probe and two directors on its two sides. The substrate-air-metal layer can reverse kz while directors can reverse kx. Therefore, the wave-vector k of reflected waves can be completely reversed by the sub-element, providing necessary momentum for retroreflection. The -2 diffraction order of the metagrating is tailored to channel out waves with reversed k, leading to retroreflection. Due to the element's four-fold rotational symmetry, retroreflection can be achieved along four directions, covering all of the four quarters of azimuth angle. We demonstrate prototypes in Ku band, and the average backscattering enhancement compared with a metal plane with the same area (SAMP) along the four directions reaches up to 31.3 dB with incident angle 50.0° at 15.0 GHz. Both simulated and measured results verify our design. This work provides another perspective on retroreflection and may find applications in retroreflective functional devices.
光栅的结构元件在操纵衍射波方面带来了更多自由度,例如,利用零级以外的衍射级进行后向反射。大多数后向反射超光栅(RM)只能在一个特定方向下实现后向反射,这限制了它们的应用。在本文中,我们提出了一种基于波矢反转的准全向TE偏振波RM。超光栅元件由四个旋转对称的子元件组成,每个子元件由一个探针及其两侧的两个导向器组成。衬底-空气-金属层可以反转kz,而导向器可以反转kx。因此,反射波的波矢k可以被子元件完全反转,为后向反射提供必要的动量。超光栅的-2衍射级经过调整,以输出波矢反转的波,从而实现后向反射。由于元件的四重旋转对称性,可以沿四个方向实现后向反射,覆盖方位角的所有四个象限。我们展示了Ku波段的原型,在15.0 GHz频率下,入射角为50.0°时,与相同面积的金属平面(SAMP)相比,沿四个方向的平均后向散射增强高达31.3 dB。仿真和测量结果均验证了我们的设计。这项工作为后向反射提供了另一种视角,可能在后向反射功能器件中找到应用。