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Acquisition of a full-resolution image and aliasing reduction for a spatially modulated imaging polarimeter with two snapshots

机译:具有两个快照的空间调制成像旋光仪的全分辨率图像采集和混叠减少

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摘要

A snapshot imaging polarimeter using spatial modulation can encode four Stokes parameters allowing instantaneous polarization measurement from a single interferogram. However, the reconstructed polarization images could suffer a severe aliasing signal if the high-frequency component of the intensity image is prominent and occurs in the polarization channels, and the reconstructed intensity image also suffers reduction of spatial resolution due to low-pass filtering. In this work, a method using two anti-phase snapshots is proposed to address the two problems simultaneously. The full-resolution target image and the pure interference fringes can be obtained from the sum and the difference of the two anti-phase interferograms, respectively. The polarization information reconstructed from the pure interference fringes does not contain the aliasing signal from the high-frequency component of the object intensity image. The principles of the method are derived and its feasibility is tested by both computer simulation and a verification experiment. This work provides a novel method for spatially modulated imaging polarization technology with two snapshots to simultaneously reconstruct a full-resolution object intensity image and high-quality polarization components.
机译:使用空间调制的快照成像旋光仪可以对四个Stokes参数进行编码,从而可以从单个干涉图进行瞬时偏振测量。但是,如果强度图像的高频分量突出并且出现在偏振通道中,则重建的偏振图像可能会遭受严重的混叠信号,并且由于低通滤波,重建的强度图像还会遭受空间分辨率的降低。在这项工作中,提出了一种使用两个反相快照的方法来同时解决两个问题。可以分别从两个反相干涉图的和和差中获得全分辨率目标图像和纯干涉条纹。从纯干涉条纹重构的偏振信息不包含来自物体强度图像高频分量的混叠信号。推导了该方法的原理,并通过计算机仿真和验证实验对方法的可行性进行了测试。这项工作为具有两个快照的空间调制成像偏振技术提供了一种新颖的方法,可以同时重建全分辨率的物体强度图像和高质量的偏振分量。

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