Real-time THz ptychography using an optically modulated aperture
Abstract
Ptychography allows ordinary cameras to perform both quantitative phase and intensity imaging. However, the requirement for relative object to probe motion and high measurement count significantly limits imaging speed and application scope. In this work, we introduce optically modulated aperture ptychography, using a silicon photomodulator as a rapidly reconfigurable aperture, deployable across the microwave, millimeter wave and terahertz bands. We demonstrate experimentally at ~ 0.1 THz real-time ptychographic image capture, without moving parts. Furthermore, a reconfigurable aperture facilitates diverse and spatially multiplexed probes. We use a multiplexed known-probe reconstruction strategy that improves signal-to-noise ratio and increases the information content per measurement, enabling the capture of fluid dynamics at 16 fps. Our optical modulation approach enables high-throughput ptychographic imaging of dynamic samples, for applications such as non-destructive evaluation and in-vivo biomedical imaging.
Cite
@article{arxiv.2607.17796,
title = {Real-time THz ptychography using an optically modulated aperture},
author = {Diksha Garg and Anil Kumar and Nicholas E. Grant and John D. Murphy and John E. Cunningham and Nick Stone and Euan Hendry and Harry Penketh},
journal= {arXiv preprint arXiv:2607.17796},
year = {2026}
}
Comments
14 pages 12 figures incl supplementary 2 supplementary visualisations (videos)