Xie Yunqiang, Liu Chunyu, Liu Shuai, Song Weiyang, Fan Xinghao
Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Sensors (Basel). 2021 Mar 25;21(7):2289. doi: 10.3390/s21072289.
Snapshot spectral imaging technology plays an important role in many fields. However, most existing snapshot imaging spectrometers have the shortcomings of a large volume or heavy computational burden. In this paper, we present a novel snapshot imaging spectrometer based on the pixel-level filter array (PFA), which can simultaneously obtain both spectral and spatial information. The system is composed of a fore-optics, a PFA, a relay lens, and a monochromatic sensor. The incoming light first forms an intermediate image on the PFA through the fore-optics. Then, the relay lens reimages the spectral images on the PFA onto the monochromatic sensor. Through the use of the PFA, we can capture a three-dimensional (spatial coordinates and wavelength) datacube in a single exposure. Compared with existing technologies, our system possesses the advantages of a simple implementation, low cost, compact structure, and high energy efficiency by removing stacked dispersive or interferometric elements. Moreover, the characteristic of the direct imaging mode ensures the low computational burden of the system, thus shortening the imaging time. The principle and design of the system are described in detail. An experimental prototype is built and field experiments are carried out to verify the feasibility of the proposed scheme.
快照光谱成像技术在许多领域发挥着重要作用。然而,现有的大多数快照成像光谱仪存在体积大或计算负担重的缺点。在本文中,我们提出了一种基于像素级滤波器阵列(PFA)的新型快照成像光谱仪,它可以同时获取光谱和空间信息。该系统由前光学系统、PFA、中继透镜和单色传感器组成。入射光首先通过前光学系统在PFA上形成中间图像。然后,中继透镜将PFA上的光谱图像重新成像到单色传感器上。通过使用PFA,我们可以在单次曝光中捕获三维(空间坐标和波长)数据立方体。与现有技术相比,我们的系统具有实现简单、成本低、结构紧凑和能量效率高的优点,通过去除堆叠的色散或干涉元件。此外,直接成像模式的特性确保了系统的低计算负担,从而缩短了成像时间。详细描述了系统的原理和设计。构建了实验原型并进行了现场实验,以验证所提方案的可行性。