Arbabi Ehsan, Arbabi Amir, Kamali Seyedeh Mahsa, Horie Yu, Faraji-Dana MohammadSadegh, Faraon Andrei
T. J. Watson Laboratory of Applied Physics, California Institute of Technology, 1200 E. California Blvd., Pasadena, CA, 91125, USA.
Department of Electrical and Computer Engineering, University of Massachusetts Amherst, 151 Holdsworth Way, Amherst, MA, 01003, USA.
Nat Commun. 2018 Feb 23;9(1):812. doi: 10.1038/s41467-018-03155-6.
Varifocal lenses, conventionally implemented by changing the axial distance between multiple optical elements, have a wide range of applications in imaging and optical beam scanning. The use of conventional bulky refractive elements makes these varifocal lenses large, slow, and limits their tunability. Metasurfaces, a new category of lithographically defined diffractive devices, enable thin and lightweight optical elements with precisely engineered phase profiles. Here we demonstrate tunable metasurface doublets, based on microelectromechanical systems (MEMS), with more than 60 diopters (about 4%) change in the optical power upon a 1-μm movement of one metasurface, and a scanning frequency that can potentially reach a few kHz. They can also be integrated with a third metasurface to make compact microscopes (1 mm thick) with a large corrected field of view (500 μm or 40 degrees) and fast axial scanning for 3D imaging. This paves the way towards MEMS-integrated metasurfaces as a platform for tunable and reconfigurable optics.
传统上通过改变多个光学元件之间的轴向距离来实现的变焦透镜,在成像和光束扫描中有着广泛的应用。使用传统的大型折射元件使得这些变焦透镜体积庞大、速度缓慢,并限制了它们的可调性。超表面是一类新的光刻定义的衍射器件,能够实现具有精确设计相位分布的薄型轻质光学元件。在此,我们展示了基于微机电系统(MEMS)的可调谐超表面双合透镜,当一个超表面移动1μm时,光焦度变化超过60屈光度(约4%),扫描频率可能达到几千赫兹。它们还可以与第三个超表面集成,制成紧凑型显微镜(厚度约1毫米),具有大的校正视场(约500μm或40度)和用于三维成像的快速轴向扫描。这为将MEMS集成超表面作为可调谐和可重构光学平台铺平了道路。