Single-shot blind deconvolution in coherent diffraction imaging with coded aperture

被引:0
作者
Hideyuki Muneta
Ryoichi Horisaki
Yohei Nishizaki
Makoto Naruse
Jun Tanida
机构
[1] Osaka University,Department of Information and Physical Sciences, Graduate School of Information Science and Technology
[2] The University of Tokyo,Department of Information Physics and Computing, Graduate School of Information Science and Technology
[3] Osaka Research Institute of Industrial Science and Technology,Systems and Control Laboratory, Environmental Technology Research Division
来源
Optical Review | 2023年 / 30卷
关键词
Coherent diffraction imaging; Blind deconvolution; Coded aperture; Phase retrieval; Noninvasive imaging through scattering media;
D O I
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中图分类号
学科分类号
摘要
We present a method for single-shot blind deconvolution in coherent diffraction imaging. Coherent diffraction imaging is a technique for non-interferometric quantitative phase imaging without reference light. In our method based on coherent diffraction imaging, a complex amplitude object is illuminated with coherent light, and light from the object is captured through unknown aberrating media and a coded aperture located on the pupil plane to reduce estimated variables on the aberrated pupil function. Both the amplitude and the phase of the object are recovered from the single captured intensity image by a phase retrieval algorithm in which the coded aperture is utilized as a support to estimate the sparse aberrated pupil function. We numerically and experimentally demonstrate the proposed method with complex amplitude objects under severe aberrating conditions. In the experiment, we quantitatively evaluate its performance with ptychography, which is a method for multi-shot coherent diffraction imaging. Our method enables quantitative phase imaging through turbulence by using simple and reference-free optical hardware without any invasive process.
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页码:509 / 515
页数:6
相关论文
共 110 条
[1]  
Fienup JR(1982)Phase retrieval algorithms: a comparison Appl. Opt. 21 2758-2769
[2]  
Fienup JR(2013)Phase retrieval algorithms: a personal tour Appl. Opt. 52 45-56
[3]  
Chapman HN(2010)Coherent lensless X-ray imaging Nat. Photon. 4 833-839
[4]  
Nugent KA(2015)Beyond crystallography: diffractive imaging using coherent x-ray light sources Science 348 530-535
[5]  
Miao J(2018)X-ray ptychography Nat. Photon. 12 9-17
[6]  
Ishikawa T(2020)Broadband coherent diffractive imaging Nat. Photon. 14 618-622
[7]  
Robinson IK(2013)Wide-field, high-resolution Fourier ptychographic microscopy Nat. Photon. 7 739-745
[8]  
Murnane MM(2016)Lensless imaging and sensing Annu. Rev. Biomed. Eng. 18 77-102
[9]  
Pfeiffer F(2016)Fourier ptychography for brightfield, phase, darkfield, reflective, multi-slice, and fluorescence imaging IEEE J. Sel. Top. Quantum Electron. 22 77-88
[10]  
Huijts J(1999)Phase retrieval for undersampled broadband images J. Opt. Soc. Am. A 16 1831-1837