Jung Joonkyo, Kim Hyeonhee, Shin Jonghwa
Department of Materials Science and Engineering, KAIST, Daejeon 34141, Republic of Korea.
Nanophotonics. 2023 Jan 16;12(8):1373-1385. doi: 10.1515/nanoph-2022-0634. eCollection 2023 Apr.
Metalenses have potential to replace various bulky conventional optical elements with ultrathin nanostructure arrays. In particular, active metalenses with reconfigurable focusing capability have attracted considerable interest from the academic and industrial communities. However, their tuning range is currently restricted by limited material properties and fabrication difficulties. Here, a hybrid optical system capable of three-dimensional relocation of a focal spot is proposed and experimentally demonstrated. The system comprises a mechanically actuated passive metalens doublet that can be easily fabricated with commonly available materials and processes. An incident laser can be focused to a desired point in three-dimensional space simply by rotating two metalenses or changing their separation. In addition, exploiting the polarization-multiplexing capability of metasurfaces, a hologram is incorporated to the metalenses to guide rotational and positional alignment of two metasurfaces. The ease of fabrication and alignment provided by this approach could widen its application to many practical fields.
超颖透镜有潜力用超薄纳米结构阵列取代各种笨重的传统光学元件。特别是,具有可重构聚焦能力的有源超颖透镜引起了学术界和工业界的广泛关注。然而,它们的调谐范围目前受到有限的材料特性和制造困难的限制。在此,提出并通过实验证明了一种能够对焦点进行三维重新定位的混合光学系统。该系统包括一个机械驱动的无源超颖透镜 doublet,它可以很容易地用常用材料和工艺制造。只需旋转两个超颖透镜或改变它们的间距,入射激光就可以聚焦到三维空间中的一个期望点。此外,利用超表面的偏振复用能力,将一个全息图集成到超颖透镜中,以引导两个超表面的旋转和位置对准。这种方法所提供的易于制造和对准的特性可能会拓宽其在许多实际领域的应用。