Zheng Guoxing, Wu Weibiao, Li Zile, Zhang Shuang, Mehmood Muhammad Qasim, He Ping'an, Li Song
Opt Lett. 2017 Apr 1;42(7):1261-1264. doi: 10.1364/OL.42.001261.
A conventional optical zoom system is bulky, expensive, and complicated for real-time adjustment. Recent progress in metasurface research has provided a new solution to achieve innovative compact optical systems. In this Letter, we propose a highly integrated step-zoom lens with dual field of view (FOV) based on double-sided metasurfaces. With silicon nanobrick arrays of spatially varying orientations sitting on both sides of a transparent substrate, this ultrathin step-zoom metalens can be designed to focus an incident circular polarized beam with handedness-dependent FOVs without varying the focal plane, which is important for practical applications. The proposed dual FOV step-zoom metalens, with advantages such as ultracompactness, flexibility, and replicability, can find applications in fields that require ultracompact zoom imaging and beam focusing.
传统光学变焦系统体积庞大、价格昂贵且实时调整复杂。超表面研究的最新进展为实现创新的紧凑型光学系统提供了新的解决方案。在本信函中,我们基于双面超表面提出了一种具有双视场(FOV)的高度集成步进变焦透镜。通过在透明基板两侧设置空间取向不同的硅纳米砖阵列,这种超薄步进变焦超透镜能够在不改变焦平面的情况下,将具有与手性相关视场的入射圆偏振光束聚焦,这对于实际应用非常重要。所提出的双视场步进变焦超透镜具有超紧凑、灵活和可复制等优点,可应用于需要超紧凑变焦成像和光束聚焦的领域。