Affiliation:
1. Zhejiang University
2. Westlake Institute for Optoelectronics
Abstract
Ptychography, a widely used computational imaging method, generates images by processing coherent interference patterns scattered from an object of interest. In order to capture scenes with large field-of-view (FoV) and high spatial resolution simultaneously in a single shot, we propose a temporal-compressive structured-light Ptychography system. A novel three-step reconstruction algorithm composed of multi-frame spectra reconstruction, phase retrieval, and multi-frame image stitching is developed, where we employ the emerging Transformer-based network in the first step. Experimental results demonstrate that our system can expand the FoV by 20× without losing spatial resolution. Our results offer huge potential for enabling lensless imaging of molecules with large FoV as well as high spatial-temporal resolutions. We also notice that due to the loss of low-intensity information caused by the compressed sensing process, our method so far is only applicable to binary targets.
Funder
National Natural Science Foundation of China
Science Fund for Distinguished Young Scholars of Zhejiang Province
Westlake Institute for Optoelectronics
Subject
Atomic and Molecular Physics, and Optics
Cited by
1 articles.
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