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Low coherence reflectometry of randomly inhomogeneous media: basic approaches to data processing

机译:随机非均匀介质的低相干反射法:数据处理的基本方法

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摘要

Various approaches to interpretation of the low-coherence reflectometry (LCR) data obtained using LCR probes of fine- and coarse-grained random media are discussed. Depending on the relationship between the sample thickness and the transport mean free path of light propagation in the sample, different methods of data analysis must be used. In the case of thin strongly scattering samples, the transport mean free path can be recovered using estimation of the average decay rate of the scan-depth-dependent LCR signal. On the contrary, this technique is not applicable in the case of thick multiple scattering media. Under this condition, the transport mean free path can be obtained using comparison of the scan-integrated reflectometric signal for the used detection conditions with the reference data obtained using Monte-Carlo simulation of light propagation in the probed sample. In turn, the obtained transport mean free path characterizes the structure of the examined sample (i.e., the average size of cells in highly porous or foam-like samples). The considered approaches are illustrated by the results of LCR probing of strongly scattering composite materials, foamy liquids, and highly porous polymer matrices (scaffold prototypes).
机译:讨论了多种解释使用细粒度和粗粒度随机介质的LCR探针获得的低相干反射法(LCR)数据的方法。根据样品厚度和样品中光传播的传输平均自由程之间的关系,必须使用不同的数据分析方法。在稀薄的强散射样本中,可以通过估计依赖于扫描深度的LCR信号的平均衰减率来恢复传输平均自由程。相反,该技术不适用于厚的多重散射介质。在这种条件下,可以通过将所用检测条件的扫描积分反射信号与使用被测样品中光传播的蒙特卡洛模拟获得的参考数据进行比较,来获得运输平均自由程。进而,所获得的转运平均自由程表征了所检查的样品的结构(即,高度多孔或泡沫状样品中的孔的平均大小)。 LCR探测强散射复合材料,泡沫液体和高度多孔的聚合物基质(支架原型)的结果说明了所考虑的方法。

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