Wang Peng, Mohammad Nabil, Menon Rajesh
Department of Electrical and Computer Engineering, University of Utah, Salt Lake City, UT 84112, USA.
Sci Rep. 2016 Feb 12;6:21545. doi: 10.1038/srep21545.
We exploit the inherent dispersion in diffractive optics to demonstrate planar chromatic-aberration-corrected lenses. Specifically, we designed, fabricated and characterized cylindrical diffractive lenses that efficiently focus the entire visible band (450 nm to 700 nm) onto a single line. These devices are essentially pixelated, multi-level microstructures. Experiments confirm an average optical efficiency of 25% for a three-wavelength apochromatic lens whose chromatic focus shift is only 1.3 μm and 25 μm in the lateral and axial directions, respectively. Super-achromatic performance over the continuous visible band is also demonstrated with averaged lateral and axial focus shifts of only 1.65 μm and 73.6 μm, respectively. These lenses are easy to fabricate using single-step grayscale lithography and can be inexpensively replicated. Furthermore, these devices are thin (<3 μm), error tolerant, has low aspect ratio (<1:1) and offer polarization-insensitive focusing, all significant advantages compared to alternatives that rely on metasurfaces. Our design methodology offers high design flexibility in numerical aperture and focal length, and is readily extended to 2D.
我们利用衍射光学器件固有的色散特性来展示平面消色差校正透镜。具体而言,我们设计、制造并表征了圆柱形衍射透镜,该透镜能将整个可见光波段(450纳米至700纳米)高效聚焦到一条直线上。这些器件本质上是像素化的多层微结构。实验证实,对于一个三波长复消色差透镜,其平均光学效率为25%,其横向和轴向的色差焦点偏移分别仅为1.3微米和25微米。在连续可见光波段上也展示了超消色差性能,其平均横向和轴向焦点偏移分别仅为1.65微米和73.6微米。这些透镜使用单步灰度光刻法易于制造,并且可以低成本复制。此外,这些器件很薄(<3微米),容错性好,纵横比低(<1:1),并且提供偏振不敏感聚焦,与依赖超表面的替代方案相比,所有这些都是显著的优势。我们的设计方法在数值孔径和焦距方面具有很高的设计灵活性,并且很容易扩展到二维。