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Demonstration of a no-moving-parts axial scanning confocal microscope using liquid crystal optics

机译:使用液晶光学元件演示无移动部件轴向扫描共聚焦显微镜

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摘要

For the first time, to the best of authors' knowledge, a no-moving-parts axial scanning confocal microscope (ASCM) system is designed and demonstrated using a combination of a large diameter liquid crystal (LC) lens and a classical microscope objective lens. By electrically controlling the 5 mm. diameter LC lens, the 633 nm wavelength focal spot is moved continuously over a 48 mu m range with a measured 3-dB axial resolution of 3.1 mu m using a 0.65 numerical aperture (NA) micro-objective lens. The ASCM is successfully used to image an Indium Phosphide (InP) twin square optical waveguide sample with a 10.2 mu m waveguide pitch and 2.3 mu m height and width. Using fine analog electrical control of the LC lens, a super-fine sub-wavelength axial resolution of 270 nm is demonstrated. The proposed ASCM can be useful in various precision three-dimensional (313) imaging and profiling applications. (c) 2006 Elsevier B.V. All rights reserved.
机译:据作者所知,这是首次使用大直径液晶(LC)透镜和经典显微镜物镜的组合设计并演示了无移动部件轴向扫描共聚焦显微镜(ASCM)系统。通过电气控制5毫米。在直径为LC的镜头中,使用0.65数值孔径(NA)的微物镜,在48μm范围内连续移动633 nm波长的焦点,测得的3-dB轴向分辨率为3.1μm。 ASCM已成功用于对磷化铟(InP)双方形光波导样品进行成像,其波导间距为10.2微米,高度和宽度均为2.3微米。使用LC透镜的精细模拟电控制,演示了270 nm的超细亚波长轴向分辨率。所提出的ASCM可以在各种精度三维(313)成像和配置文件应用中使用。 (c)2006 Elsevier B.V.保留所有权利。

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