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Design of optimal polarimeters: maximization of signal-to-noise ratio and minimization of systematic error

机译:最佳旋光仪的设计:最大化信噪比和最小化系统误差

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摘要

The relationship between system condition and signal-to-noise ratio (SNR) in reconstructed Stokes parameter images is investigated for rotating compensator, variable retardance, and rotating analyzer Stokes vector (SV) polarimeters. A variety of optimal configurations are presented for each class of systems. The operation of polarimeters is discussed in terms of a four-dimensional conical vector space; and the concept of nonorthogonal bases, frames, and tight frames is introduced to describe the operation of SV polarimeters. Although SNR is an important consideration, performance of a polarimeter in the presence of errors in the calibration and alignment of the optical components is also important. The relationship between system condition and error performance is investigated, and it is shown that an optimum system from the point of view of SNR is not always an optimum system with respect to error performance. A detailed theory of error performance is presented, and the error of a SV polarimeter is shown to be related to the stability and condition number of the polarization processing matrices. The rms error is found to fall off as the inverse of the number of measurements taken. Finally, the concepts used to optimize SV polarimeters are extended to be useful for full Mueller matrix polarimeters. (C) 2002 Optical Society of America. [References: 29]
机译:针对旋转补偿器,可变延迟和旋转分析仪斯托克斯矢量(SV)旋光仪,研究了系统状态与重建的斯托克斯参数图像中信噪比(SNR)之间的关系。针对每种系统类别,提出了各种最佳配置。偏振计的操作是根据四维圆锥形矢量空间来讨论的。并介绍了非正交基,框架和紧框架的概念,以描述SV旋光仪的操作。尽管SNR是一个重要的考虑因素,但在光学组件的校准和对准存在误差的情况下,旋光仪的性能也很重要。研究了系统条件和错误性能之间的关系,从SNR的角度来看,最佳系统并不总是相对于错误性能而言是最佳系统。给出了误差性能的详细理论,并证明了SV旋光仪的误差与偏振处理矩阵的稳定性和条件数有关。发现均方根误差随着所进行测量的次数的倒数而下降。最后,用于优化SV旋光仪的概念得到扩展,可用于完整的Mueller矩阵旋光仪。 (C)2002年美国眼镜学会。 [参考:29]

著录项

  • 来源
    《Applied optics》 |2002年第4期|共12页
  • 作者

    Tyo JS.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
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