Yang Bin, Ju Xueping, Yan Changxiang, Zhang Junqiang
Opt Express. 2016 Dec 12;24(25):28923-28935. doi: 10.1364/OE.24.028923.
This paper presents a method to calibrate alignment errors for a channeled spectropolarimeter. A calibration model, including an alignment errors determination model and an alignment errors compensation model, is derived firstly. To determine the exact alignment errors of the high-order retarders and polarizer included in the spectropolarimeter, an auxiliary high-order retarder and a reference beam are used. The auxiliary high-order retarder does not affect the normal use of the spectropolarimeter and the polarization state of the reference beam needs not to be controlled accurately. Based on the determination results, the alignment errors are compensated by using a correction algorithm without any precise mechanical adjustments. Simulation results show that the alignment errors can be determined accurately and the errors of the reconstructed Stokes parameters due to the alignment errors are reduced effectively by the presented method. Finally, experimental results are summarized and analyzed to demonstrate the effectiveness of the calibration method.
本文提出了一种用于校准通道式光谱偏振计对准误差的方法。首先推导了一个校准模型,包括对准误差确定模型和对准误差补偿模型。为了确定光谱偏振计中包含的高阶延迟器和偏振器的精确对准误差,使用了一个辅助高阶延迟器和一束参考光束。辅助高阶延迟器不影响光谱偏振计的正常使用,并且参考光束的偏振态不需要精确控制。基于确定结果,通过使用一种校正算法来补偿对准误差,而无需任何精确的机械调整。仿真结果表明,所提出的方法能够准确确定对准误差,并有效降低由于对准误差导致的重构斯托克斯参数的误差。最后,总结并分析了实验结果,以证明校准方法的有效性。