High-resolution ptychographic imaging enabled by high-speed multi-pass scanning

As a coherent diffraction imaging technique, ptychography provides high-spatial resolution beyond Rayleigh’s criterion of the focusing optics, but it is also sensitively affected by the decoherence coming from the spatial and temporal variations in the experiment. Here we show that high-speed ptycho...

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Veröffentlicht in:Optics express 2022-07, Vol.30 (15), p.26027-26042
Hauptverfasser: Deng, Junjing, Yao, Yudong, Jiang, Yi, Chen, Si, Mooney, Tim M., Klug, Jeffrey A., Marin, Fabricio S., Roehrig, Christian, Yue, Ke, Preissner, Curt, Cai, Zhonghou, Lai, Barry, Vogt, Stefan
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container_end_page 26042
container_issue 15
container_start_page 26027
container_title Optics express
container_volume 30
creator Deng, Junjing
Yao, Yudong
Jiang, Yi
Chen, Si
Mooney, Tim M.
Klug, Jeffrey A.
Marin, Fabricio S.
Roehrig, Christian
Yue, Ke
Preissner, Curt
Cai, Zhonghou
Lai, Barry
Vogt, Stefan
description As a coherent diffraction imaging technique, ptychography provides high-spatial resolution beyond Rayleigh’s criterion of the focusing optics, but it is also sensitively affected by the decoherence coming from the spatial and temporal variations in the experiment. Here we show that high-speed ptychographic data acquisition with short exposure can effectively reduce the impact from experimental variations. To reach a cumulative dose required for a given resolution, we further demonstrate that a continuous multi-pass scan via high-speed ptychography can achieve high-resolution imaging. This low-dose scan strategy is shown to be more dose-efficient, and has potential for radiation-sensitive sample studies and time-resolved imaging.
doi_str_mv 10.1364/OE.460232
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subjects PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
title High-resolution ptychographic imaging enabled by high-speed multi-pass scanning
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