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Absorption effects in diffusing wave spectroscopy

机译:扩散波谱中的吸收效应

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摘要

The effect of absorption in diffusing wave spectroscopy (DWS) was studied using an absorption-dependent diffusive equation for describing the light propagation within a turbid liquid where dielectric microspheres have been embedded. Here, we propose an expression for the time-averaged light intensity autocorrelation function that correctly describes the time fluctuations for the scattered light, in the regime where the diffusion approximation accurately describes the light propagation. This correction was suspected previously, but it was not formally derived from a light diffusive equation. As in the case of no absorption, we obtained that time fluctuations of the scattered light can be related to the mean square displacement of the embedded particles. However, if a correction for absorption is not taken into account, the colloidal dynamics can be misinterpreted. Experimental results show that this new formulation correctly describes the time fluctuations of scattered light. This new procedure extends the applicability of DWS, and it opens the possibility of doing microrheology with this optical method in systems where absorption cannot be avoided.
机译:使用依赖于吸收的扩散方程式研究了吸收在扩散波谱(DWS)中的作用,该方程式描述了在已嵌入电介质微球的混浊液体中的光传播。在这里,我们提出了一种时间平均光强度自相关函数的表达式,该表达式正确地描述了散射光的时间波动,其中扩散近似准确地描述了光的传播。以前怀疑过此校正,但未从光扩散方程式正式得出。与没有吸收的情况一样,我们获得了散射光的时间波动与嵌入粒子的均方位移有关的信息。但是,如果不考虑吸收校正,则胶体动力学可能会被误解。实验结果表明,该新公式正确描述了散射光的时间波动。这一新程序扩展了DWS的适用性,并为在无法避免吸收的系统中使用这种光学方法进行微流变学打开了可能性。

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