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A novel and compact spectral imaging system based on two curved prisms

机译:一种基于两种弯曲棱镜的新型和紧凑型光谱成像系统

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摘要

As a novel detection approach which simultaneously acquires two-dimensional visual picture and one-dimensional spectral information, spectral imaging offers promising applications on biomedical imaging, conservation and identification of artworks, surveillance of food safety, and so forth. A novel moderate-resolution spectral imaging system consisting of merely two optical elements is illustrated in this paper. It can realize the function of a relay imaging system as well as a 10nm spectral resolution spectroscopy. Compared to conventional prismatic imaging spectrometers, this design is compact and concise with only two special curved prisms by utilizing two reflective surfaces. In contrast to spectral imagers based on diffractive grating, the usage of compound-prism possesses characteristics of higher energy utilization and wider free spectral range. The seidel aberration theory and dispersive principle of this special prism are analyzed at first. According to the results, the optical system of this design is simulated, and the performance evaluation including spot diagram, MTF and distortion, is presented. In the end, considering the difficulty and particularity of manufacture and alignment, an available method for fabrication and measurement is proposed.
机译:作为一种新的检测方法,其同时获取二维视觉图像和一维光谱信息,光谱成像在艺术品的生物医学成像,保护和识别方面提供了有前途的应用,艺术品,食品安全监测等。本文示出了由仅两种光学元件组成的新型中频分辨率光谱成像系统。它可以实现继电器成像系统以及10nm光谱分辨率光谱的功能。与传统的棱柱成像光谱仪相比,这种设计紧凑而简洁,仅利用两个反射表面,只有两个特殊的弯曲棱镜。与基于衍射光栅的光谱成像仪相反,复合棱镜的使用具有更高能量利用和更广泛的自由光谱范围的特性。首先分析了这种特殊棱镜的Seidel像差理论和分散原理。根据结果​​,模拟了该设计的光学系统,并提出了包括点图,MTF和失真的性能评估。最后,考虑制造和对准的难度和特殊性,提出了一种制造和测量的可用方法。

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