A high-resolution polarization-hyperspectral image sensor for complex intelligent sensing
Высокоразрешающий поляризационно-гиперспектральный сенсор изображений для сложных задач интеллектуального зондирования
2026-08-25
SCID: 54.1/6gnewzt3
Discuss with AI
hyperspectral 3D modelingmachine perceptionmultidimensional on-chip optical imagingpolarization-hyperspectral imagingsnapshot imaging
Figures from the paper
Abstract (AI)
Light carries high-dimensional information such as spectrum and polarization, but conventional photodetectors measure only intensity, making snapshot acquisition of multiple optical dimensions difficult. Here, we report a multidimensional on-chip optical imaging (MOCI) architecture comprising three functional layers, including a multidimensional encoding layer to encode incident light, an image acquisition layer to collect coupled intensity measurements, and a computing layer to recover multidimensional images from a snapshot measurement. Following this architecture, we developed an on-chip polarization-hyperspectral imaging (PHI) sensor operating at 74 frames s−1 with 2048 × 2448 pixels, 61 visible-to-near-infrared spectral channels, and four polarization states. The sensor acquires spectral and polarization signatures simultaneously in complex environments, enabling polarization-enhanced hyperspectral imaging through haze, suppression of reflection and glare, and hyperspectral 3D modeling with normal and height maps. This compact, on-chip, and high-throughput sensor provides a route to integrated snapshot multidimensional imaging and machine perception under challenging optical conditions. This study reports a multidimensional on-chip optical imaging (MOCI) technique, and developed a polarization-hyperspectral imaging sensor, enabling robust joint polarization-hyperspectral imaging and intelligent sensing in complex environments.
Key Findings
1
Demonstrates haze-penetrating polarization-enhanced hyperspectral imaging, reflection and glare suppression, and hyperspectral 3D modeling with normal and height maps.
2
Develops a polarization-hyperspectral sensor operating at 74 frames s−1 with 2048 × 2448 pixels, 61 spectral channels, and four polarization states.
3
Enables simultaneous snapshot acquisition of spectral and polarization signatures in complex environments.
4
Introduces a multidimensional on-chip optical imaging architecture with encoding, intensity acquisition, and computational reconstruction layers.
5
Provides a compact, high-throughput route to integrated multidimensional imaging and machine perception under challenging optical conditions.
Research Object
On-chip polarization-hyperspectral imaging sensor for multidimensional optical imaging in complex environments
Research Subject
Simultaneous snapshot acquisition and computational recovery of spectral and polarization information, including haze-penetrating imaging, reflection and glare suppression, and hyperspectral 3D modeling
Publication Details
Publication Date
2026-08-25
Journal
Publisher
ISSN
Cited by
0
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest