Montes-González Ivan, Bruce Neil C, Rodríguez-Herrera Oscar G, Rodríguez Núñez Omar
Appl Opt. 2019 Aug 1;58(22):5952-5957. doi: 10.1364/AO.58.005952.
We present a calibration method for a full-Stokes polarimeter. The polarimeter uses two liquid-crystal variable retarders (LCVR) and a linear polarizer to measure the four Stokes parameters. The calibration method proposed in this paper calculates the errors in the experimental setup by fitting the experimental intensity measurements for a set of calibration samples to a theoretical polarimeter with errors. The errors calculated in the method include the axes alignment errors and the errors in the retardance values of both LCVRs. The resulting calibration parameters are verified by measuring the polarization state of a light beam passing through a rotating linear polarizer, a half-wave plate, and a quarter-wave plate and comparing with the predictions for an ideal, error-free polarimeter. It is found that an average reduction in rms error of 55.8% can be obtained with the proposed method.
我们提出了一种用于全斯托克斯偏振计的校准方法。该校准方法使用两个液晶可变延迟器(LCVR)和一个线性偏振器来测量四个斯托克斯参数。本文提出的校准方法通过将一组校准样品的实验强度测量值拟合到存在误差的理论偏振计中来计算实验装置中的误差。该方法计算出的误差包括轴对准误差以及两个LCVR延迟值的误差。通过测量光束通过旋转线性偏振器、半波片和四分之一波片后的偏振态,并与理想无误差偏振计的预测结果进行比较,对所得校准参数进行验证。结果发现,使用所提出的方法可使均方根误差平均降低55.8%。