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Validating the assumption to the interference approximation by use of measurements of absorption efficiency and hindered scattering in dense suspensions

机译:通过使用吸收效率和致密悬浮液中受阻散射的测量值来验证干扰近似的假设

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摘要

Frequency domain photon migration (FDPM) measurements were employed to accurately quantify optical properties of both the suspending fluid and particles within dense polystyrene suspensions of 143-or 226-nm mean diameter at varying concentrations (5-30% by volume). The measured absorption coefficients varied linearly with particle volume fraction whereas the isotropic scattering coefficients varied nonlinearly in agreement with the prediction that utilizes the hard-sphere structure factor model. These results validate the interference approximation of light scattering to describe light propagation accurately within dense suspensions. Furthermore, owing to the accuracy of FDPM absorption measurements, the imaginary refractive indices for both particles and their suspending fluid were determined and were found to compare favorably with literature values.
机译:频域光子迁移(FDPM)测量用于准确定量不同浓度(5-30%体积)的平均直径143-或226-nm的致密聚苯乙烯悬浮液中悬浮液和颗粒的光学性能。测得的吸收系数随颗粒体积分数线性变化,而各向同性散射系数则与使用硬球结构因子模型的预测非线性地变化。这些结果验证了光散射的干扰近似值,以准确描述光在致密悬浮液中的传播。此外,由于FDPM吸收测量的准确性,可以确定颗粒及其悬浮液的虚构折射率,并与文献值相比较。

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