Nonlinearity in polarization imaging system with partially polarized and partially coherent illumination

Xiaoying Hu, Hao Li, S. Hu, Weiguo Liu, M. Takeda, Wen Wang
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Abstract

As an advanced technology, polarization imaging has attracted widespread interests in recent years due to its unique ability to detect the polarization information of objects. With illumination of partially coherent and partially polarized light, the polarization imaging systems are in generally nonlinear systems because they do not possess a transfer matrix in the usual sense. Nonetheless, it is possible to apply a sinusoidal amplitude object at the input and to measure a periodic output. However, unlike the linear case, knowledge of the response of the polarization system to a sinusoidal input does not allow one to predict what the output will be for other types of inputs. To address the fundamental nonlinearity in evaluation of the Stokes images, we provide a frequency- domain calculation of Stoke images of a sinusoidal amplitude grating under partially polarized and partially coherent illumination, and propose a new concept referred to as transmission cross coefficients to describe its frequency response of polarization imaging system. Some of the implications of such analysis are also given for polarization imaging evaluation.
部分偏振光和部分相干光偏振成像系统的非线性
偏振成像作为一种先进的技术,由于其独特的探测物体偏振信息的能力,近年来引起了广泛的关注。在部分相干光和部分偏振光的照明下,偏振成像系统通常是非线性系统,因为它们不具有通常意义上的传递矩阵。尽管如此,有可能在输入处应用正弦振幅对象并测量周期性输出。然而,与线性情况不同,极化系统对正弦输入的响应的知识不允许人们预测其他类型输入的输出将是什么。为了解决Stokes图像评估中的基本非线性问题,本文对部分偏振和部分相干照明下正弦振幅光栅的Stokes图像进行了频域计算,并提出了透射交叉系数的新概念来描述其偏振成像系统的频率响应。这种分析的一些含义也给出了极化成像评价。
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