activity
20182022
most citedWide-field, high-resolution lensless on-chip microscopy via near-field blind ptychographic modulation

131 citations · 560 across the 12 of their papers we have counts for

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Showing physics.opticsShow all

5 papers · 1 filter

physics.optics20222 cited

Lensless coherent diffraction imaging based on spatial light modulator with unknown modulation curve

Hao Sha, Chao He, Shaowei Jiang +6

Lensless imaging is a popular research field for the advantages of small size, wide field-of-view and low aberration in recent years. However, some traditional lensless imaging met…

physics.optics2021

Bypassing the resolution limit of diffractive zone plate optics via rotational Fourier ptychography

Chengfei Guo, Shaowei Jiang, Pengming Song +4

Diffractive zone plate optics uses a thin micro-structure pattern to alter the propagation direction of the incoming light wave. It has found important applications in extreme-wave…

physics.optics202049 cited

Super-resolved multispectral lensless microscopy via angle-tilted, wavelength-multiplexed ptychographic modulation

Pengming Song, Ruihai Wang, Jiakai Zhu +8

We report an angle-tilted, wavelength-multiplexed ptychographic modulation approach for multispectral lensless on-chip microscopy. In this approach, we illuminate the specimen with…

physics.optics201975 cited

Full-field Fourier ptychography (FFP): spatially varying pupil modeling and its application for rapid field-dependent aberration metrology

Pengming Song, Shaowei Jiang, He Zhang +3

Digital aberration measurement and removal play a prominent role in computational imaging platforms aimed at achieving simple and compact optical arrangements. A recent important c…

physics.optics201972 cited

Near-field Fourier ptychography: super-resolution phase retrieval via speckle illumination

He Zhang, Shaowei Jiang, Jun Liao +4

Achieving high spatial resolution is the goal of many imaging systems. Designing a high-resolution lens with diffraction-limited performance over a large field of view remains a di…