Quan Naicheng, Zhang Chunmin, Mu Tingkui, You Caiyin
Opt Express. 2020 Dec 7;28(25):37758-37772. doi: 10.1364/OE.409256.
A spectroscopic Mueller matrix polarimeter based on spectro-temporal modulation with a compact, low-cost, and birefringent crystal-based configuration has been developed. The polarization state generator and polarization state analyzer in the system consists of a polarizer in front of two high-order retarders with equal thickness and a rotating achromatic quarter wave-plate followed by a fixed analyzer, respectively. It can acquire the 16 spectroscopic elements of the Mueller matrix in broadband with a faster measurement speed than that of the conventional spectroscopic Mueller matrix polarimeter based on a dual-rotating retarder. In addition, the spectral polarization modulation provided by the polarization state generator can produce five separate channels in the Fourier domain, which leads to a larger bandwidth of each channel than that of the existing spectral modulated spectroscopic Mueller matrix polarimeters. Experiment on the measurements of an achromatic quarter-wave plate oriented at different azimuths and SiO thin films deposited on silicon wafers with different thicknesses are carried out to show the feasibility of the developed spectroscopic Mueller matrix polarimeter.
基于光谱时间调制、采用紧凑、低成本且基于双折射晶体配置的光谱穆勒矩阵偏振计已被研制出来。系统中的偏振态发生器和偏振态分析仪分别由位于两个等厚高阶延迟器之前的一个偏振器以及一个旋转消色差四分之一波片加一个固定分析仪组成。与基于双旋转延迟器的传统光谱穆勒矩阵偏振计相比,它能够以更快的测量速度在宽带范围内获取穆勒矩阵的16个光谱元素。此外,偏振态发生器提供的光谱偏振调制可在傅里叶域产生五个独立通道,这使得每个通道的带宽比现有的光谱调制光谱穆勒矩阵偏振计更大。进行了对不同方位的消色差四分之一波片以及沉积在不同厚度硅片上的SiO薄膜的测量实验,以证明所研制的光谱穆勒矩阵偏振计的可行性。