高光谱成像
快照(计算机存储)
计算机科学
光谱成像
人工智能
计算机视觉
成像光谱仪
图像传感器
全光谱成像
光电探测器
光强度
编码
多光谱图像
光学成像
模式识别(心理学)
极化(电化学)
遥感
多维系统
医学影像学
无线传感器网络
光学
结构光
成像光谱学
图像处理
覆盖
数据采集
高动态范围成像
编码(内存)
关联数组
化学成像
热点(地质)
作者
Zhen Wang,Pengming Peng,Zhengyi Zhao,Chengfu Zhao,Rong Yan,Yibo Feng,Hanwen Xu,Jiadong Zhou,Jun Zhang,Liheng Bian
标识
DOI:10.1038/s41467-026-76971-w
摘要
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.
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