Yan Ling-Wei
Guang Pu Xue Yu Guang Pu Fen Xi. 2014 Apr;34(4):1135-9.
The paper designs and improves a telecentric imaging spectrometer, the Dyson imaging spectrometer. The optical structure of the imaging spectrometer is simple and compact, which is only composed of a hemispherical lens and a concave grating. Based on the Rowland circle and refraction theory, the broadband anastigmatic imaging condition of Dyson imaging spectrometer which is the ratio of the grating radius and hemispherical lens radius has been analyzed. By imposing this condition for two different wavelengths, the parameters of the optical system presenting low aberrations and excellent imaging quality are obtained. To make the design spectrometer more suitable for the engineering application, the paper studies the method making the detector not to attach the surface of the hemispherical lens. A design example using optimal conditions was designed to prove our theory. The Dyson imaging spectrometer of which the imaging RMS radii are less than 2.5 microm and the advanced spectrometer of which the imaging RMS radii are less than 8 microm, with NA 0.33, waveband 0.38-1.7 microm and the slit length 15 mm, have been obtained. The design method and results are more feasible and predominant, and can be applied in the areas of the industry and remote sensing.
本文设计并改进了一种远心成像光谱仪——戴森成像光谱仪。该成像光谱仪的光学结构简单紧凑,仅由一个半球形透镜和一个凹面光栅组成。基于罗兰圆和折射理论,分析了戴森成像光谱仪的宽带消像散成像条件,即光栅半径与半球形透镜半径之比。通过对两种不同波长施加该条件,获得了具有低像差和优异成像质量的光学系统参数。为使设计的光谱仪更适合工程应用,本文研究了使探测器不附着在半球形透镜表面的方法。设计了一个使用最佳条件的设计实例来证明我们的理论。已获得成像均方根半径小于2.5微米的戴森成像光谱仪以及成像均方根半径小于8微米、数值孔径为0.33、波段为0.38 - 1.7微米且狭缝长度为15毫米的先进光谱仪。该设计方法和结果更可行且具有优势,可应用于工业和遥感领域。