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部分穆勒矩阵偏振仪的结构化分解设计

Structured decomposition design of partial Mueller matrix polarimeters.

作者信息

Alenin Andrey S, Scott Tyo J

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2015 Jul 1;32(7):1302-12. doi: 10.1364/JOSAA.32.001302.

DOI:10.1364/JOSAA.32.001302
PMID:26367159
Abstract

Partial Mueller matrix polarimeters (pMMPs) are active sensing instruments that probe a scattering process with a set of polarization states and analyze the scattered light with a second set of polarization states. Unlike conventional Mueller matrix polarimeters, pMMPs do not attempt to reconstruct the entire Mueller matrix. With proper choice of generator and analyzer states, a subset of the Mueller matrix space can be reconstructed with fewer measurements than that of the full Mueller matrix polarimeter. In this paper we consider the structure of the Mueller matrix and our ability to probe it using a reduced number of measurements. We develop analysis tools that allow us to relate the particular choice of generator and analyzer polarization states to the portion of Mueller matrix space that the instrument measures, as well as develop an optimization method that is based on balancing the signal-to-noise ratio of the resulting instrument with the ability of that instrument to accurately measure a particular set of desired polarization components with as few measurements as possible. In the process, we identify 10 classes of pMMP systems, for which the space coverage is immediately known. We demonstrate the theory with a numerical example that designs partial polarimeters for the task of monitoring the damage state of a material as presented earlier by Hoover and Tyo [Appl. Opt.46, 8364 (2007)10.1364/AO.46.008364APOPAI1559-128X]. We show that we can reduce the polarimeter to making eight measurements while still covering the Mueller matrix subspace spanned by the objects.

摘要

部分穆勒矩阵偏振仪(pMMPs)是主动传感仪器,它用一组偏振态探测散射过程,并使用另一组偏振态分析散射光。与传统的穆勒矩阵偏振仪不同,pMMPs并不试图重建整个穆勒矩阵。通过适当地选择发生器和分析仪的状态,与全穆勒矩阵偏振仪相比,可以用更少的测量次数重建穆勒矩阵空间的一个子集。在本文中,我们考虑穆勒矩阵的结构以及我们使用较少测量次数来探测它的能力。我们开发了分析工具,使我们能够将发生器和分析仪偏振态的特定选择与仪器测量的穆勒矩阵空间部分联系起来,还开发了一种优化方法,该方法基于平衡所得仪器的信噪比与该仪器以尽可能少的测量次数准确测量特定一组所需偏振分量的能力。在此过程中,我们确定了10类pMMP系统,其空间覆盖范围是已知的。我们用一个数值例子演示了该理论,该例子为监测材料损伤状态的任务设计了部分偏振仪,如胡佛和泰奥之前所提出的[《应用光学》46, 8364 (2007)10.1364/AO.46.008364APOPAI1559 - 128X]。我们表明,我们可以将偏振仪简化为进行八次测量,同时仍能覆盖由目标所跨越的穆勒矩阵子空间。

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1
Structured decomposition design of partial Mueller matrix polarimeters.部分穆勒矩阵偏振仪的结构化分解设计
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2
Design of channeled partial Mueller matrix polarimeters.带通道的部分穆勒矩阵偏振计的设计
J Opt Soc Am A Opt Image Sci Vis. 2016 Jun 1;33(6):1060-70. doi: 10.1364/JOSAA.33.001060.
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Design and optimization of partial Mueller matrix polarimeters.部分穆勒矩阵偏振仪的设计与优化
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