Short-wave infrared broadband up-conversion imaging by using a noncritical phase matched bulk KTiOPO$_4$ crystal
Abstract
Compared to cryogenically cooled conventional detectors, up-conversion detection enables efficient room-temperature short-wave infrared (SWIR) imaging. Although quasi-phase-matching (QPM) in periodically poled crystals offers advantages, the small crystal aperture (typically 1 mm3 mm) limits resolution. Non-poled crystals enable larger apertures but suffer walk-off aberrations. This work overcomes these limitations by using a noncritical phase matched (NCPM) KTiOPO crystal (6 mm7 mm aperture, 0.5 mm length). Results show resolutions 6 and 2 higher than periodically poled crystals in orthogonal directions, with broad conversion band (1.3-2.2 m) covering biological and atmospheric windows. The absence of walk-off ensures better image fidelity in up-conversion process. This study presents the first comprehensive characterization of NCPM-based broadband up-conversion imaging, demonstrating performance at the theoretical resolution limit while circumventing drawbacks inherent in alternative up-conversion schemes and conventional detectors.
Keywords
Cite
@article{arxiv.2509.20955,
title = {Short-wave infrared broadband up-conversion imaging by using a noncritical phase matched bulk KTiOPO$_4$ crystal},
author = {Xiaohua Wang and Zhaoqizhi Han and Zhenghe Zhou and Jinpeng Li and Bowen Liu and He Zhang and Yinhai Li and Zhiyuan Zhou and Baosen Shi},
journal= {arXiv preprint arXiv:2509.20955},
year = {2025}
}