Xing Wenhe, Ju Xueping, Yan Changxiang, Yang Bin, Zhang Junqiang
Appl Opt. 2018 Sep 20;57(27):7857-7864. doi: 10.1364/AO.57.007857.
Alignment errors of birefringent retarders and retardation errors introduced by environmental perturbations can cause significant influences on reconstructed Stokes parameters for the channeled spectropolarimeter. In this paper, we propose what we believe is a novel self-correction model that is independent of input polarization parameters to reduce the effects of alignment errors and environmental perturbations. This self-correction method can realize calibration and compensation of alignment errors and retardations simultaneously by measuring the target light in orbit. Simulation results show that alignment errors and retardations can be calibrated accurately, and the reconstructed Stokes parameters by using the presented method are more precise than by using the traditional method. The validity and feasibility of the presented method are further confirmed through experiments in the presence of alignment errors and environmental perturbations.
双折射延迟器的对准误差以及环境扰动所引入的延迟误差,会对通道光谱偏振仪重建的斯托克斯参数产生重大影响。在本文中,我们提出了一种我们认为新颖的自校正模型,该模型独立于输入偏振参数,以减少对准误差和环境扰动的影响。这种自校正方法可以通过在轨测量目标光,同时实现对准误差和延迟的校准与补偿。仿真结果表明,对准误差和延迟能够被精确校准,并且使用本文提出的方法重建的斯托克斯参数比使用传统方法更精确。通过在存在对准误差和环境扰动的情况下进行实验,进一步证实了本文方法的有效性和可行性。