Single-shot framing integration photography with high spatial resolution at 5.3*1012 frames per second by an inversed 4f system
Abstract
We present a framing integration ultrafast photography (FIP), which integrates the framing structure, codes a dynamic event by an inversed 4f system (I4F) and decodes regionally with high spatial resolution. In the experiment about laser-induced plasma, FIP achieved a framing rate of 5.3*1012 frames per second (fps) and an intrinsic spatial resolution of 110.4 lp/mm. It has an excellent spatio-temporal resolution and a compact and flexible structure. Hence, it can probe unrepeatable ultrafast intra- and inter-atomic/molecular dynamics, different in size and duration with high-quality. Besides, FIP can lay a foundation for integrating and simplifying ultrafast photography instruments. Here the minimum framing time (temporal resolution) is limited by only the laser pulse duration; be sure, attosecond laser technology may further increase framing rates by several orders of magnitude.
Cite
@article{arxiv.2110.01941,
title = {Single-shot framing integration photography with high spatial resolution at 5.3*1012 frames per second by an inversed 4f system},
author = {Qifan Zhu and Yi Cai and Xuanke Zeng and Hu Long and Liangwei Zeng and Yongle Zhu and Xiaowei Lu and Jingzhen Li},
journal= {arXiv preprint arXiv:2110.01941},
year = {2021}
}