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近折射率匹配能够通过增材制造实现固体衍射光学元件的制造。

Near index matching enables solid diffractive optical element fabrication via additive manufacturing.

作者信息

Orange Kedem Reut, Opatovski Nadav, Xiao Dafei, Ferdman Boris, Alalouf Onit, Kumar Pal Sushanta, Wang Ziyun, von der Emde Henrik, Weber Michael, Sahl Steffen J, Ponjavic Aleks, Arie Ady, Hell Stefan W, Shechtman Yoav

机构信息

Russell Berrie Nanotechnology Institute, Technion-Israel Institute of Technology, Haifa, Israel.

Lorry Lokey Interdisciplinary Center for Life Sciences and Engineering, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

Light Sci Appl. 2023 Sep 12;12(1):222. doi: 10.1038/s41377-023-01277-1.

Abstract

Diffractive optical elements (DOEs) have a wide range of applications in optics and photonics, thanks to their capability to perform complex wavefront shaping in a compact form. However, widespread applicability of DOEs is still limited, because existing fabrication methods are cumbersome and expensive. Here, we present a simple and cost-effective fabrication approach for solid, high-performance DOEs. The method is based on conjugating two nearly refractive index-matched solidifiable transparent materials. The index matching allows for extreme scaling up of the elements in the axial dimension, which enables simple fabrication of a template using commercially available 3D printing at tens-of-micrometer resolution. We demonstrated the approach by fabricating and using DOEs serving as microlens arrays, vortex plates, including for highly sensitive applications such as vector beam generation and super-resolution microscopy using MINSTED, and phase-masks for three-dimensional single-molecule localization microscopy. Beyond the advantage of making DOEs widely accessible by drastically simplifying their production, the method also overcomes difficulties faced by existing methods in fabricating highly complex elements, such as high-order vortex plates, and spectrum-encoding phase masks for microscopy.

摘要

衍射光学元件(DOEs)在光学和光子学领域有着广泛的应用,这得益于它们能够以紧凑的形式实现复杂的波前整形。然而,DOEs的广泛适用性仍然有限,因为现有的制造方法既繁琐又昂贵。在此,我们提出了一种用于制造固态、高性能DOEs的简单且经济高效的制造方法。该方法基于共轭两种折射率近乎匹配的可固化透明材料。折射率匹配允许元件在轴向尺寸上进行极大的缩放,这使得能够使用商用3D打印以数十微米的分辨率简单地制造模板。我们通过制造和使用用作微透镜阵列、涡旋板的DOEs来演示该方法,这些应用包括用于高灵敏度应用,如矢量光束生成和使用MINSTED的超分辨率显微镜,以及用于三维单分子定位显微镜的相位掩膜。除了通过极大地简化DOEs的生产使其广泛可用这一优势外,该方法还克服了现有方法在制造高度复杂元件(如高阶涡旋板和用于显微镜的光谱编码相位掩膜)时所面临的困难。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b595/10495398/fb0cb9d770e0/41377_2023_1277_Fig1_HTML.jpg

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