Hao Honggang, Cai Zhonglyu, Tang Pan, Li Bao
Appl Opt. 2024 Apr 1;63(10):A78-A85. doi: 10.1364/AO.509613.
To meet the requirements of integrated and high-resolution focusing devices for passive millimeter-wave (PMMW) imaging systems, a polarization-multiplexed high-resolution near-field focusing metasurface lens is proposed. Metasurface units consist of two dielectric layers and three metal layers and are designed with a multiarm windmill structure. This design allows the units to independently control the electromagnetic response of incident -polarized and -polarized waves while maintaining a thickness of only 0.16 (2 mm). The metasurface lens that can achieve dual-channel near-field focusing was designed by combining the focusing principle of the metasurface lens and phase superposition principle based on the above design. The lens consists of 30×30 units and has a size of 120×120 . According to the simulation results, the lens is able to focus the -polarized waves of 24 GHz at =50 plane with a focal spot size of 0.68 (8.5 mm), and the focusing beam efficiency is 35.2%. Similarly, the -polarized waves of 24 GHz are focused at =70 plane with a focal spot size of 0.72 (9 mm), and the focusing beam efficiency is 40.7%. The proposed metasurface lens is promising for applications in PMMW imaging systems, medical sensors, automotive millimeter-wave radar, and other related fields, owing to the characteristics of high resolution, compact size, and multifunctionality.
为满足无源毫米波(PMMW)成像系统对集成式高分辨率聚焦器件的要求,提出了一种偏振复用高分辨率近场聚焦超表面透镜。超表面单元由两层电介质层和三层金属层组成,并采用多臂风车结构进行设计。这种设计使单元能够独立控制入射偏振波和偏振波的电磁响应,同时保持仅0.16(2毫米)的厚度。基于上述设计,结合超表面透镜的聚焦原理和相位叠加原理,设计了一种能够实现双通道近场聚焦的超表面透镜。该透镜由30×30个单元组成,尺寸为120×120 。根据仿真结果,该透镜能够在=50 平面上对24 GHz的偏振波进行聚焦,焦斑尺寸为0.68(8.5毫米),聚焦光束效率为35.2%。同样,24 GHz的偏振波在=70 平面上聚焦,焦斑尺寸为0.72(9毫米),聚焦光束效率为40.7%。由于具有高分辨率、紧凑尺寸和多功能性等特点,所提出的超表面透镜在PMMW成像系统、医疗传感器、汽车毫米波雷达及其他相关领域具有广阔的应用前景。