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Particle-sizing methods: a stationary-phase-based comparison

机译:粒度测定方法:基于固定相的比较

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摘要

Stationary-phase approximation is used to examine and compare the reliability and interpretability of two main methods of particle sizing. The first method, differential light scattering, regards spherical objects having different refractive indices. Theoretical expressions are obtained, enabling the derivation of optical and geometrical properties of the object from its scattering pattern. The second method, automated microscope imaging, is considered with theoretical implications for the finite aperture of the objective lens. It is shown that, besides the well known Rayleigh resolution limit, finite aperture must affect size measurement due to optical properties of the particles. Simulation and experimental results for both differential light scattering and microscope imaging of polystyrene beads are in good agreement with theory.
机译:平稳相逼近法用于检查和比较两种主要的粒度测定方法的可靠性和可解释性。第一种方法,微分光散射法,针对具有不同折射率的球形物体。获得理论表达式,使得能够从物体的散射图案推导其光学和几何特性。第二种方法是自动显微镜成像,被认为对物镜的有限光圈具有理论意义。结果表明,除了众所周知的瑞利分辨率极限外,由于颗粒的光学特性,有限孔径还必须影响尺寸测量。聚苯乙烯微珠的差分光散射和显微镜成像的仿真和实验结果与理论吻合良好。

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