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时间分辨穆勒矩阵成像偏振测量法。

Time-resolved Mueller matrix imaging polarimetry.

作者信息

Berezhnyy Ihor, Dogariu Aristide

出版信息

Opt Express. 2004 Sep 20;12(19):4635-49. doi: 10.1364/opex.12.004635.

Abstract

We present a new method of time-resolved Mueller matrix imaging polarimetry for spatial and temporal characterization of the polarization effects in backscattering from turbid media. The technique allows measuring the time evolution of spatially varying polarization patterns of diffusely backscattered light with picosecond resolution. A series of time-resolved polarization patterns are obtained at various time delays, are analyzed in sequence, and used to separate the polarimetric contributions of different scattering paths. Specific features of the 2D Mueller matrix components corresponding to light backscattered from colloidal suspensions were determined and characterized. The temporally-and spatially-resolved measurements permit detailed analysis of the changes in the magnitude, sign, and the general symmetry properties of Mueller matrix components.

摘要

我们提出了一种新的时间分辨穆勒矩阵成像偏振测量方法,用于对浑浊介质后向散射中的偏振效应进行空间和时间表征。该技术能够以皮秒分辨率测量漫反射后向散射光的空间变化偏振图案的时间演化。在不同的时间延迟下获得一系列时间分辨偏振图案,依次进行分析,并用于分离不同散射路径的偏振贡献。确定并表征了与胶体悬浮液后向散射光对应的二维穆勒矩阵分量的特定特征。时间和空间分辨测量允许对穆勒矩阵分量的大小、符号和一般对称性质的变化进行详细分析。

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