镜头(地质)
光学(聚焦)
纳米光子学
光学
焦距
焦点深度(构造)
反向
焦点
点扩散函数
几何光学
材料科学
反问题
计算机科学
光电子学
物理
基点
数学
几何学
生物
数学分析
古生物学
构造学
俯冲
作者
Elyas Bayati,Raphaël Pestourie,Shane Colburn,Zin Lin,Steven G. Johnson,Arka Majumdar
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2020-03-25
卷期号:7 (4): 873-878
被引量:40
标识
DOI:10.1021/acsphotonics.9b01703
摘要
Extended depth of focus (EDOF) lenses are important for various applications in computational imaging and microscopy. In addition to enabling novel functionalities, EDOF lenses can alleviate the need for stringent alignment requirements for imaging systems. Existing EDOF lenses, however, are often inefficient or produce an asymmetric point spread function (PSF) that blurs images. Inverse design of nanophotonics, including metasurfaces, has generated strong interest in recent years owing to its potential for generating exotic and innovative optical elements, which are generally difficult to model intuitively. Using adjoint optimization-based inverse electromagnetic design, in this paper, we designed a cylindrical metasurface lens operating at ~ 625nm with a depth of focus exceeding that of an ordinary lens. We validated our design by nanofabrication and optical characterization of silicon nitride metasurface lenses (with lateral dimension of 66.66 {\mu}m) with three different focal lengths (66.66 {\mu}m,100 {\mu}m,133.33 {\mu}m). The focusing efficiencies of the fabricated extended depth of focus metasurface lenses are similar to those of traditional metalenses.
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