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Wide-Spectrum Microscope with a Long Working Distance Aspherical Objective Based on Obscuration Constraint

机译:基于遮挡约束的长距离非球面物镜的广谱显微镜

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摘要

We present an approach for an initial configuration design based on obscuration constraint and on-axis Taylor series expansion to realize the design of long working distance microscope (numerical aperture (NA) = 0.13 and working distance (WD) = 525 mm) with a low obscuration aspherical Schwarzschild objective in wide-spectrum imaging (λ = 400–900 nm). Experiments of the testing on the resolution target and inspection on United States Air Force (USAF) resolution chart and a line charge-coupled device (CCD) (pixel size of 14 μm × 56 μm) with different wavelength light sources (λ = 480 nm, 550 nm, 660 nm, 850 nm) were implemented to verify the validity of the proposed method.
机译:我们提出一种基于模糊约束和轴向泰勒级数展开的初始配置设计方法,以实现低工作距离的长工作距离显微镜(数值孔径(NA)= 0.13和工作距离(WD)= 525 mm)的设计在宽光谱成像中(λ= 400–900 nm)使非球面Schwarzschild物镜模糊。分辨率目标的测试和美国空军(USAF)分辨率表和线电荷耦合器件(CCD)(像素大小为14μm×56μm)使用不同波长光源(λ= 480 nm)的检验的实验,550 nm,660 nm,850 nm)以验证所提出方法的有效性。

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