Ma Xiang, Wu Jinxian, Hu Yujie, Li Yanqiu
Appl Opt. 2024 May 1;63(13):3381-3389. doi: 10.1364/AO.517955.
The collinear reflection Mueller matrix imaging polarimeter is suitable for characterizing thick samples with high-scattering depolarization such as biological tissues or in-situ living organs. Achieving fast detection and high measurement accuracy is vital to prevent artifacts and accurately assess polarization characteristics in these applications. This paper demonstrates a fast collinear reflection imaging polarimeter based on liquid crystal variable retarders (LCVRs-CRMMIP). We propose a novel compound calibration method (CCM), to the best of our knowledge, which enhances measurement accuracy through light intensity correction and an improved equivalent calibration sample model. This method surpasses the double-pass eigenvalue calibration method (dp-ECM), enhancing accuracy by over 23 times. Performance evaluations with standard samples, including mirrors, linear polarizers, and wave plates, reveal that the LCVRs-CRMMIP achieves rapid measurements (about 3 s) and high accuracy with an error of less than 0.0017.
共线反射穆勒矩阵成像偏振仪适用于表征具有高散射去极化特性的厚样品,如生物组织或原位活体器官。在这些应用中,实现快速检测和高测量精度对于防止伪影并准确评估偏振特性至关重要。本文展示了一种基于液晶可变延迟器的快速共线反射成像偏振仪(LCVRs-CRMMIP)。据我们所知,我们提出了一种新颖的复合校准方法(CCM),该方法通过光强校正和改进的等效校准样品模型提高测量精度。该方法超越了双通特征值校准方法(dp-ECM),精度提高了23倍以上。使用包括镜子、线性偏振器和波片在内的标准样品进行的性能评估表明,LCVRs-CRMMIP实现了快速测量(约3秒)且精度高,误差小于0.0017。