Hong Wenzhi, Dunsby Chris
Opt Express. 2022 Jan 31;30(3):4274-4287. doi: 10.1364/OE.450320.
The remote-refocusing approach of Botcherby et al. [Opt. Lett.32, 2007 (2007)10.1364/OL.32.002007] has been applied widely to 2D and 3D fluorescence microscopes to enable rapid refocusing of the optical system without mechanically perturbing the sample. In order for this approach to operate correctly, it requires that the overall magnification of the first two microscope systems matches the ratio of the refractive indices in sample and intermedia image spaces. However, commercially available tube lenses are not always suitable to produce the desired overall magnification. Therefore, a practical approach to produce tube lenses with low expense and diffraction-limited performance is required. Tube lenses can be formed using a pair of stock achromatic doublets, however, selecting appropriate pairs of achromatic doublets from stock optics is a time-consuming process, as many combinations can be considered. In this paper, we present two software packages (Catalogue Generator and Doublet Selector) developed in MATLAB that use the application programming interface (ZOS-API) to the Zemax OpticStudio optical design software to realise an automatic search of stock achromatic doublets to produce microscope tube lenses with a specified focal length, entrance pupil diameter and maximum design field angle. An algorithm to optimise principal plane positions in versions of OpticStudio before 20.2 was also introduced to enable the use of older software versions. To evaluate the performance of Catalogue Generator and Doublet Selector, we used them to generate ten tube lens designs. All of the software-produced tube lenses have a better optical performance than those using manually selected pairs of stock doublets lenses.
博彻比等人[《光学快报》32, 2007 (2007)10.1364/OL.32.002007]提出的远程重新聚焦方法已广泛应用于二维和三维荧光显微镜,可在不对样品进行机械扰动的情况下实现光学系统的快速重新聚焦。为使该方法正常运行,要求前两个显微镜系统的总放大倍数与样品和中间像空间的折射率之比相匹配。然而,市售的管透镜并不总是适合产生所需的总放大倍数。因此,需要一种低成本且具有衍射极限性能的实用方法来生产管透镜。管透镜可以使用一对现成的消色差双合透镜来形成,然而,从现成光学元件中选择合适的消色差双合透镜对是一个耗时的过程,因为可以考虑许多组合。在本文中,我们展示了两个用MATLAB开发的软件包(目录生成器和双合透镜选择器),它们使用对Zemax OpticStudio光学设计软件的应用程序编程接口(ZOS - API)来实现对现成消色差双合透镜的自动搜索,以生产具有指定焦距、入瞳直径和最大设计视场角的显微镜管透镜。还引入了一种在OpticStudio 20.2版本之前优化主平面位置的算法,以便能够使用旧版本的软件。为评估目录生成器和双合透镜选择器的性能,我们用它们生成了十种管透镜设计。所有软件生成的管透镜都比使用手动选择的现成双合透镜对的管透镜具有更好的光学性能。