首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Optimum phase shift for quantitative phase microscopy in volume measurement
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Optimum phase shift for quantitative phase microscopy in volume measurement

机译:定量相显微镜在体积测量中的最佳相移

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摘要

Volume measurement of a phase object is one of the most distinctive capabilities of quantitative phase microscopy (QPM). However, the accuracy of a measured volume is limited by the different noises of a measurement system and the finite bandpass filter used in the phase extraction algorithm. In this paper, we analyze the inherent errors in volume measurement with QPM and propose the optimum condition that can minimize these errors. We find that phase information of a sample in the frequency domain nonlinearly oscillates as a function of the phase shift corresponding to the sample and its medium, and that the phase information of a sample inside the bandpass filter can be maximized by a proper phase shift. Through numerical simulations and actual experiments, we demonstrate that the error in phase volume measurement can be effectively reduced by the enhancement of the phase signal inside the bandpass region using an optimum amount of phase, which can be controlled by changing either the medium index or the wavelength of illumination.
机译:相物的体积测量是定量相显微镜(QPM)最具特色的功能之一。但是,测量体积的精度受到测量系统和相位提取算法中使用的有限带通滤波器的不同噪声的限制。在本文中,我们分析了使用QPM进行体积测量时固有的误差,并提出了可以使这些误差最小化的最佳条件。我们发现,频域中样本的相位信息根据与样本及其介质相对应的相移而非线性地振荡,并且通过适当的相移可以使带通滤波器内部的样本的相位信息最大化。通过数值模拟和实际实验,我们证明,通过使用最佳相位量增强带通区域内的相位信号,可以有效地减少相位体积测量中的误差,可以通过改变介质折射率或相位系数来控制照明的波长。

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