Arbabi Ehsan, Arbabi Amir, Kamali Seyedeh Mahsa, Horie Yu, Faraon Andrei
Opt Express. 2016 Aug 8;24(16):18468-77. doi: 10.1364/OE.24.018468.
Metasurfaces are ultrathin optical structures that manipulate optical wavefronts. Most metasurface devices which deflect light are designed for operation at a single wavelength, and their function changes as the wavelength is varied. Here we propose and demonstrate a double-wavelength metasurface based on polarization dependent dielectric meta-atoms that control the phases of two orthogonal polarizations independently. Using this platform, we design lenses that focus light at 915 and 780 nm with perpendicular linear polarizations to the same focal distance. Lenses with numerical apertures up to 0.7 and efficiencies from 65% to above 90% are demonstrated. In addition to the high efficiency and numerical aperture, an important feature of this technique is that the two operation wavelengths can be chosen to be arbitrarily close. These characteristics make these lenses especially attractive for fluorescence microscopy applications.
超表面是操纵光波前的超薄光学结构。大多数用于光偏转的超表面器件设计用于在单一波长下工作,并且其功能会随着波长的变化而改变。在此,我们提出并展示了一种基于偏振相关介电超原子的双波长超表面,该超原子可独立控制两个正交偏振的相位。利用这个平台,我们设计了透镜,这些透镜能将垂直线性偏振的915纳米和780纳米的光聚焦到相同的焦距。展示了数值孔径高达0.7且效率在65%至90%以上的透镜。除了高效率和数值孔径外,该技术的一个重要特点是两个工作波长可以选择得任意接近。这些特性使得这些透镜在荧光显微镜应用中特别有吸引力。