Abstract
Abstract
Imaging with a single-pixel detector is challenging, when an object is hidden in time-varying scattering media. The correlation between illumination patterns and collected single-pixel light intensities is severely destroyed. In this Letter, we report high-fidelity correspondence imaging of a hidden object in time-varying scattering media. A real-valued noiselet matrix with orthonormal columns is generated and applied to offer high robustness against scattering media. To eliminate dynamic scaling factors, the collected single-pixel light intensities are corrected by using a sequence of estimated expectations. Then, an untrained neural network is designed and fine-tuned to recover a high-quality object image without any datasets and labels. It is validated in experiments that our method can always achieve high-quality reconstruction of an object hidden in time-varying scattering media with light disturbances. This work could pave the way for high-quality imaging of an object hidden in complex media.
Direct answer
What can I do from this paper page?
Use this page to scan "Imaging a hidden object in time-varying scattering media with a single-pixel detector" quickly: start with the summary and abstract, then check the authors, source, topics, and related papers. From here, open Scollr to follow Random lasers and scattering media research, save the paper, or map adjacent work.
Research areas
Follow related topics
Citation
BibTeX
@article{Xu2026Imaging,
title = {Imaging a hidden object in time-varying scattering media with a single-pixel detector},
author = {Zhihan Xu and Zian Wang and Tianshun Zhang and Yin Xiao and Wen Chen},
journal = {Applied Physics Letters},
year = {2026},
doi = {10.1063/5.0340962},
url = {https://doi.org/10.1063/5.0340962}
}
FAQ
Using this paper in a discovery workflow
How do I find related work for this paper?
Use the related papers and topic links on this page as starting points. In Scollr, you can also open the paper and build a literature map around its references, citing papers, and related work.
How can I keep up with new Random lasers and scattering media research papers?
Follow Random lasers and scattering media research in Scollr. New papers from the topic flow into a personalized feed, and you can save useful studies to revisit later.
Can I cite this paper from this page?
This page includes a static BibTeX block for Imaging a hidden object in time-varying scattering media with a single-pixel detector. Always verify the DOI, source, and publication details against the publisher record before submitting a manuscript.
Follow this research in Scollr
Follow the topics and authors behind this paper, save useful studies, and build a literature map when you are ready to go deeper.
Get the app