English

Passive Incoherent Ultrafast Mid-Infrared Upconversion Imaging and Its Calibration

Optics 2026-02-05 v1 Instrumentation and Detectors

Abstract

Ultrafast mid-infrared (MIR) imaging is a key enabling capability for monitoring transient thermal and plasma phenomena in scientific diagnostics and industrial safety. However, conventional cryogenic MIR cameras face a fundamental trade-off between frame rate, noise, and pixel format. Here we report a passive, incoherent MIR imaging platform that leverages sum-frequency upconversion in chirped periodically poled lithium niobate (CPLN) to translate broadband 3--5um scenes to the near-infrared, enabling ultrafast acquisition on a silicon-based intensified CCD (iCCD). In fast-kinetics mode we achieve a physical frame rate of 100kHz with microsecond-scale gate control, and we directly capture the full evolution of an air-breakdown electric arc, resolving its rapid ignition, expansion, and decay dynamics. Beyond demonstrating ultrafast passive imaging, we introduce a drift-aware calibration workflow based on Allan deviation analysis to quantitatively select the gate width and averaging strategy under realistic slow-drift and multiplicative noise. This combined capability -- ultrafast passive MIR imaging plus operationally meaningful calibration -- provides a practical route toward real-time thermal surveillance and early-warning systems for hazardous fast transients.

Keywords

Cite

@article{arxiv.2602.04483,
  title  = {Passive Incoherent Ultrafast Mid-Infrared Upconversion Imaging and Its Calibration},
  author = {Jin-Peng Li and Zhi-You Li and Zhao-Qi-Zhi Han and Xiao-Hua Wang and He Zhang and Yin-Hai Li and Bo-Wen Liu and Wen-Tao Luo and Zhi-Yuan Zhou and Bao-Sen Shi},
  journal= {arXiv preprint arXiv:2602.04483},
  year   = {2026}
}

Comments

13 pages,5 figures

R2 v1 2026-07-01T09:35:49.092Z