McWilliam Amy, Al Khafaji Mustafa A, Svensson Sphinx J, Pádua Sebastião, Franke-Arnold Sonja
Opt Express. 2024 Jun 3;32(12):21909-21924. doi: 10.1364/OE.521069.
Mueller matrices provide a complete description of a medium's response to excitation by polarized light, and their characterization is important across a broad range of applications from ellipsometry in material science to polarimetry in biochemistry, medicine and astronomy. Here we introduce single-shot Mueller matrix polarimetry based on generalized measurements performed with a Poincaré beam. We determine the Mueller matrix of a homogeneous medium with unknown optical activity by detecting its optical response to a Poincaré beam, which across its profile contains all polarization states, and analyze the resulting polarization pattern in terms of four generalized measurements, which are implemented as a path-displaced Sagnac interferometer. We illustrate the working of our Mueller matrix polarimetry on the example of tilted and rotated wave plates and find excellent agreement with predictions as well as alternative Stokes measurements. After initial calibration, the alignment of the device stays stable for up to 8 hours, promising suitability for the dynamic characterization of Mueller matrices that change in time. Unlike traditional rotating waveplate polarimetry, our method allows the acquisition of a sample's dynamic Mueller matrix. We expect that our feasibility study could be developed into a practical and versatile tool for the real-time analysis of optical activity changes, with applications in biomedical and biochemical research and industrial monitoring.
穆勒矩阵完整描述了介质对偏振光激发的响应,其特性在从材料科学中的椭偏测量到生物化学、医学和天文学中的偏振测量等广泛应用中都很重要。在此,我们介绍基于用庞加莱光束进行的广义测量的单次穆勒矩阵偏振测量法。我们通过检测均匀介质对庞加莱光束的光学响应来确定其具有未知旋光性的穆勒矩阵,该光束在其轮廓上包含所有偏振态,并根据四种广义测量来分析所得的偏振图案,这四种广义测量通过路径位移萨尼亚克干涉仪来实现。我们以倾斜和旋转波片为例说明了我们的穆勒矩阵偏振测量法的工作原理,并发现与预测结果以及替代的斯托克斯测量结果非常吻合。在初始校准后,该设备的对准可保持稳定长达8小时,有望适用于随时间变化的穆勒矩阵的动态特性表征。与传统的旋转波片偏振测量法不同,我们的方法允许获取样品的动态穆勒矩阵。我们预计,我们的可行性研究可以发展成为一种实用且通用的工具,用于实时分析旋光性变化,应用于生物医学和生物化学研究以及工业监测。