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用于测量微球光学参数的光散射技术的精度。

Precision of light scattering techniques for measuring optical parameters of microspheres.

作者信息

Ray A K, Souyri A, Davis E J, Allen T M

出版信息

Appl Opt. 1991 Sep 20;30(27):3974-83. doi: 10.1364/AO.30.003974.

Abstract

This experimental and theoretical study of light scattering techniques addresses the questions of deconvolution of light scattering data (phase functions and optical resonance spectra) from droplets and the uniqueness of that deconvolution for the measurement of size and refractive index of microspheres. Theory and experiment are compared for single component and multicomponent microdroplets and for layered microspheres levitated in electrodynamic balances. Size changes of the order of 1 A have been measured by tracking resonance shifts of slowly evaporating single component droplets. For multicomponent droplet evaporation, which involves simultaneous size and refractive index changes, and for rapid evaporation, precision is reduced to approximately 1 part in 10(4) for each parameter.

摘要

这项关于光散射技术的实验和理论研究探讨了从液滴中反卷积光散射数据(相位函数和光学共振光谱)的问题,以及该反卷积在测量微球尺寸和折射率方面的唯一性。针对单组分和多组分微滴以及悬浮在电动天平中的分层微球,对理论和实验进行了比较。通过跟踪缓慢蒸发的单组分液滴的共振位移,测量到了约1埃量级的尺寸变化。对于涉及尺寸和折射率同时变化的多组分液滴蒸发以及快速蒸发,每个参数的精度降低到约万分之一。

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