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Quantitative phase imaging and complex field reconstruction by pupil modulation differential phase contrast

机译:瞳孔调制差分相位对比定量相位成像和复杂场重建

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摘要

Differential phase contrast (DPC) is a non-interferometric quantitative phase imaging method achieved by using an asymmetric imaging procedure. We report a pupil modulation differential phase contrast (PMDPC) imaging method by filtering a sample’s Fourier domain with half-circle pupils. A phase gradient image is captured with each half-circle pupil, and a quantitative high resolution phase image is obtained after a deconvolution process with a minimum of two phase gradient images. Here, we introduce PMDPC quantitative phase image reconstruction algorithm and realize it experimentally in a 4f system with an SLM placed at the pupil plane. In our current experimental setup with the numerical aperture of 0.36, we obtain a quantitative phase image with a resolution of 1.73μm after computationally removing system aberrations and refocusing. We also extend the depth of field digitally by 20 times to ±50μm with a resolution of 1.76μm.
机译:差分相位对比(DPC)是一种通过使用不对称成像程序实现的非干涉定量相位成像方法。我们报告了一种通过半圆瞳孔过滤样本的傅立叶域的瞳孔调制差分相衬(PMDPC)成像方法。用每个半圆光瞳捕获相位梯度图像,并在反卷积处理后使用最少两个相位梯度图像获得定量的高分辨率相位图像。在这里,我们介绍PMDPC定量相位图像重建算法,并在将SLM放置在光瞳面上的4f系统中通过实验实现。在我们当前的数值孔径为0.36的实验装置中,通过计算去除系统像差并重新聚焦后,我们获得了分辨率为1.73μm的定量相位图像。我们还将数字化景深扩展了20倍,达到±50μm,分辨率为1.76μm。

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