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单次孔径扫描傅里叶叠层成像技术

Single-shot aperture-scanning Fourier ptychography.

作者信息

He Xiaoliang, Liu Cheng, Zhu Jianqiang

出版信息

Opt Express. 2018 Oct 29;26(22):28187-28196. doi: 10.1364/OE.26.028187.

Abstract

Aperture-scanning Fourier ptychography [Opt. Express22, 13586 (2014)] is a promising non-interferometric wavefront measurement technique. It eliminates the thin-sample requirement in typical Fourier ptychography employing angle-varying illumination. However, as aperture-scanning Fourier ptychography is based on step-by-step scanning, it requires long data acquisition time and a high-stability optical system. In this paper, we propose a single-shot aperture-scanning Fourier ptychography method. In our method, multiple low-resolution images are collected in a single shot by inserting a Dammann grating at a certain distance before the aperture, and the images are subsequently converted to a high-resolution complex wavefront. Compared with scanning-based aperture-scanning Fourier ptychography, the total acquisition time of the proposed method is dramatically reduced. The feasibility of our proposed method is demonstrated by proof-of-concept experiments.

摘要

孔径扫描傅里叶叠层成像技术[《光学快报》22, 13586 (2014)]是一种很有前景的非干涉波前测量技术。它消除了采用角度变化照明的典型傅里叶叠层成像技术中对薄样品的要求。然而,由于孔径扫描傅里叶叠层成像技术基于逐点扫描,它需要较长的数据采集时间和高稳定性的光学系统。在本文中,我们提出了一种单次孔径扫描傅里叶叠层成像方法。在我们的方法中,通过在孔径前一定距离处插入一个达曼光栅,在单次拍摄中采集多个低分辨率图像,随后将这些图像转换为高分辨率复波前。与基于扫描的孔径扫描傅里叶叠层成像技术相比,该方法的总采集时间大幅减少。我们通过概念验证实验证明了所提方法的可行性。

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