ITAP, University of Montpellier, INRAE, Institut Agro, 34060 Montpellier, France.
ITAP, University of Montpellier, INRAE, 34196 Montpellier, France.
Sensors (Basel). 2022 Dec 1;22(23):9355. doi: 10.3390/s22239355.
The separation of the combined effects of absorption and scattering in complex media is a major issue for better characterization and prediction of media properties. In this study, an approach coupling polarized light spectroscopy and the Mueller matrix concept were evaluated to address this issue. A set of 50 turbid liquid optical phantoms with different levels of scattering and absorption properties were made and measured at various orientations of polarizers and analyzers to obtain the 16 elements of the complete Mueller matrix in the VIS-NIR region. Partial least square (PLS) was performed to build calibration models from diffuse reflectance spectra in order to evaluate the potential of polarization spectroscopy through the elements of the Mueller matrix to predict physical and chemical parameters and hence, to discriminate scattering and absorption effects, respectively. In particular, it was demonstrated that absorption and scattering effects can be distinguished in the Rayleigh regime with linear and circular polarization from the M and M elements of the Mueller matrix, correspondingly.
在复杂介质中,吸收和散射的综合效应的分离是更好地描述和预测介质性质的一个主要问题。在这项研究中,评估了一种结合偏振光光谱和 Mueller 矩阵概念的方法来解决这个问题。制作了一组 50 个具有不同散射和吸收特性的混浊液体光学模型,并在不同的偏光镜和检偏器方向进行测量,以获得 VIS-NIR 区域中完整 Mueller 矩阵的 16 个元素。进行了偏最小二乘(PLS)以从漫反射光谱中建立校准模型,以便通过 Mueller 矩阵的元素评估偏振光谱的潜力,以预测物理和化学参数,并因此分别区分散射和吸收效应。特别地,证明了在瑞利散射区域中,可以分别从 Mueller 矩阵的 M 和 M 元素中通过线性和圆偏振来区分吸收和散射效应。