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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Evaluation of spherical particle sizes with an asymmetric illumination microscope
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Evaluation of spherical particle sizes with an asymmetric illumination microscope

机译:用不对称照明显微镜评估球形粒子尺寸

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摘要

A polarized microscope system is used to perform goniometric measurements of light scattered by small particles. The light incident angle on a sample of monodispersed latex microspheres is increased sequentially and a microscope objective lens collects scattered light from the samples. Light is only collected at angles greater than the objective lens numerical aperture (NA) so that only light scattered by the spheres is collected. The experimental results were modeled with a Mie theory-based algorithm. Experiments conducted with microspheres of diameter 1.03, 2.03, and 6.4 Μm show that, by decreasing the objective lens NA from NA=0.55 to NA=0.0548, a more distinguishable scattering pattern is detectable. From these highly shaped curves, we found that the size of a sphere of nominal diameter 2.03 Μm was 2.11 ±0.06 Μm and a 6.4 Μm sphere was 6.34 ±0.07 Μm.
机译:偏振显微镜系统用于执行由小颗粒散射的光的测量测量测量。单分散的胶乳微球样品上的光入射角依次增加,显微镜物镜收集来自样品的散射光。仅在大于物镜数值孔径(NA)的角度以大的角度收集光,从而收集由球体散射的光。实验结果用基于MIE理论的算法进行了建模。用直径1.03,2.03和6.4μm的微球进行的实验表明,通过从Na = 0.55降低到Na = 0.0548的物镜Na,可以检测到更可区分的散射图案。从这些高度形状的曲线来看,我们发现标称直径2.03μm的球体的尺寸为2.11±0.06μm,6.4μm球形为6.34±0.07μm。

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