arXiv · 2605.27855
Mid-infrared edge-enhanced imaging via angle-selective nonlinear filtering
Abstract
Mid-infrared reconfigurable edge-enhanced imaging is highly demanded in sensing and vision fields. Here, we propose a novel scheme for mid-infrared upconversion imaging with high tunability between bright-field and edge-enhanced modalities. The involved engineering of the nonlinear process favors shaping the optical transfer function of the imaging system. Consequently, a nonlinear angle-selective filter can be configured to perform an all-optical Fourier processing of the image, which highly depends on phase-matching parameters. We numerically demonstrate the ability to switch modalities between the bright-field and edge-enhanced imaging by tuning the crystal temperature, and to simultaneously acquire both information by dichromatic illumination. Notably, the achieved reconfigurability is realized without changing the imaging settings, which contrasts to previous instantiations based on pump adaptation. Therefore, the proposed architecture of upconversion imagers would pave a novel way to implement layout-compact and all-optical processing for infrared images.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Zhuohang Wei, Kun Huang, Jianan Fang, Heping Zeng. 2026-05-27. Mid-infrared edge-enhanced imaging via angle-selective nonlinear filtering. https://doi.org/10.1364/ol.539700
Cite the original work for its findings. Save a collection to share your selection of sources.