Li Xiaobo, Liu Tiegen, Huang Bingjing, Song Zhanjie, Hu Haofeng
Opt Express. 2015 Oct 19;23(21):27690-9. doi: 10.1364/OE.23.027690.
We consider the typical Stokes polarimetry system, which performs four intensity measurements to estimate a Stokes vector. We show that if the total integration time of intensity measurements is fixed, the variance of the Stokes vector estimator depends on the distribution of the integration time at four intensity measurements. Therefore, by optimizing the distribution of integration time, the variance of the Stokes vector estimator can be decreased. In this paper, we obtain the closed-form solution of the optimal distribution of integration time by employing Lagrange multiplier method. According to the theoretical analysis and real-world experiment, it is shown that the total variance of the Stokes vector estimator can be significantly decreased about 40% in the case discussed in this paper. The method proposed in this paper can effectively decrease the measurement variance and thus statistically improves the measurement accuracy of the polarimetric system.
我们考虑典型的斯托克斯偏振测量系统,该系统进行四次强度测量以估计一个斯托克斯矢量。我们表明,如果强度测量的总积分时间是固定的,斯托克斯矢量估计器的方差取决于四次强度测量时积分时间的分布。因此,通过优化积分时间的分布,可以降低斯托克斯矢量估计器的方差。在本文中,我们采用拉格朗日乘数法获得了积分时间最优分布的闭式解。根据理论分析和实际实验表明,在本文所讨论的情况下,斯托克斯矢量估计器的总方差可显著降低约40%。本文提出的方法可以有效降低测量方差,从而在统计上提高偏振测量系统的测量精度。