Zhang Kuang, Yuan Yueyi, Ding Xumin, Ratni Badreddine, Burokur Shah Nawaz, Wu Qun
Department of Microwave Engineering , Harbin Institute of Technology , Harbin 150001 , China.
Key Laboratory of Millimeter Waves , Nanjing 210096 , China.
ACS Appl Mater Interfaces. 2019 Aug 7;11(31):28423-28430. doi: 10.1021/acsami.9b07102. Epub 2019 Jul 25.
Regarding miniaturized and integrated systems, a single flat device that possesses diversified functionalities is highly desirable in optical to microwave regimes. With this perspective, bifunctional metalenses constructed by meta-atoms with integrated response to propagation phase and geometric phase are proposed for independent manipulation of right-handed and left-handed circularly polarized waves. The derived general criterion is verified in the microwave region from three bifunctional metalenses operating in transmission manner. The proof-of-concept measurements show that all these metalenses exhibit two independent functionalities that can be switched by flipping the helicity of the incident illumination. Very high efficiencies of around 80%, with peak value of 91%, are achieved by the ultrathin metasurfaces of thickness 0.15λ. The proposed metasurfaces provide a promising route for the realization of reconfigurable lenses and antennas in wireless communication systems.
对于小型化和集成系统而言,在光学到微波波段,拥有多种功能的单一平面器件是非常理想的。从这一角度出发,提出了由对传播相位和几何相位具有综合响应的超原子构建的双功能超表面透镜,用于独立操控右旋和左旋圆偏振波。从三个以透射方式工作的双功能超表面透镜在微波区域验证了推导的通用准则。概念验证测量表明,所有这些超表面透镜都展现出两种独立功能,可通过改变入射光的螺旋度来切换。厚度为0.15λ的超薄超表面实现了约80%的非常高的效率,峰值为91%。所提出的超表面为无线通信系统中可重构透镜和天线的实现提供了一条有前景的途径。