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使用包含基于微分和分解的穆勒矩阵的混合模型提取混浊介质的各向异性参数。

Extraction of anisotropic parameters of turbid media using hybrid model comprising differential- and decomposition-based Mueller matrices.

作者信息

Liao Chia-Chi, Lo Yu-Lung

机构信息

Department of Mechanical Engineering, National Cheng Kung University, Tainan 70101, Taiwan.

出版信息

Opt Express. 2013 Jul 15;21(14):16831-53. doi: 10.1364/OE.21.016831.

Abstract

A hybrid model comprising the differential Mueller matrix formalism and the Mueller matrix decomposition method is proposed for extracting the linear birefringence (LB), linear dichroism (LD), circular birefringence (CB), circular dichroism (CD), and depolarization properties (Dep) of turbid optical samples. In contrast to the differential-based Mueller matrix method, the proposed hybrid model provides full-range measurements of all the anisotropic properties of the optical sample. Furthermore, compared to the decomposition-based Mueller matrix method, the proposed model is insensitive to the multiplication order of the constituent basis matrices. The validity of the proposed method is confirmed by extracting the anisotropic properties of a compound chitosan-glucose-microsphere sample with LB/CB/Dep properties and two ferrofluidic samples with CB/CD/Dep and LB/LD/Dep properties, respectively. It is shown that the proposed hybrid model not only yields full-range measurements of all the anisotropic parameters, but is also more accurate and more stable than the decomposition method. Moreover, compared to the decomposition method, the proposed model more accurately reflects the dependency of the phase retardation angle and linear dichroism angle on the direction of the external magnetic field for ferrofluidic samples. Overall, the results presented in this study confirm that the proposed model has significant potential for extracting the optical parameters of real-world samples characterized by either single or multiple anisotropic properties.

摘要

提出了一种包含差分穆勒矩阵形式和穆勒矩阵分解方法的混合模型,用于提取浑浊光学样品的线性双折射(LB)、线性二向色性(LD)、圆双折射(CB)、圆二向色性(CD)和退偏特性(Dep)。与基于差分的穆勒矩阵方法不同,所提出的混合模型提供了光学样品所有各向异性特性的全范围测量。此外,与基于分解的穆勒矩阵方法相比,所提出的模型对组成基矩阵的乘法顺序不敏感。通过分别提取具有LB/CB/Dep特性的复合壳聚糖 - 葡萄糖 - 微球样品以及具有CB/CD/Dep和LB/LD/Dep特性的两种铁磁流体样品的各向异性特性,证实了所提方法的有效性。结果表明,所提出的混合模型不仅能对所有各向异性参数进行全范围测量,而且比分解方法更准确、更稳定。此外,与分解方法相比,所提出的模型能更准确地反映铁磁流体样品的相位延迟角和线性二向色性角对外加磁场方向的依赖性。总体而言,本研究结果证实,所提出的模型在提取具有单一或多种各向异性特性的实际样品的光学参数方面具有巨大潜力。

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