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宽带高分辨率小型紫外成像光谱仪光学系统研究

[Study on an optical system of small ultraviolet imaging spectrometer with high resolution in broadband].

作者信息

Cong Hai-Fang, Wang Chun-Hui, Wang Yu

机构信息

Harbin Institute of Technology, National Key Laboratory of Tunable Laser Technology, Harbin 150001, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Feb;33(2):562-6.

Abstract

An ultraviolet imaging spectrometer was studied based on the principle of the small scale ultraviolet spectral instrument. The scheme composed of an off-axis parabolic mirror telescope and a single toroidal grating spectral imaging system was designed. The optimization of the optical system is the optimum processing for the parameters of the toroidal grating. The optical path function and the aberration equations of the grating were analyzed. The perfect anastigmatism conditions and imaging conditions of the single toroidal grating system were obtained. These two conditions that cannot be satisfied by the algebra calculation method limit the field of view and waveband of the spectrometer. The genetic algorithm was introduced to solve the problem. A solar-blind ultraviolet imaging spectrometer for 200-280 nm was designed to verify the design method. The optimum initial configuration was calculated and simulated. A system with F/# 5.7, focal length 102 mm and high spatial resolution was designed. The modulation transfer functions (MTF) of all fields of view are more than 0.65 in the waveband in the required Nyquist frequency (20 1p x mm(-1)). The design results indicate that the optical system theory can be applied to the small scale ultraviolet imaging spectrometer with high resolution and spectral broadband.

摘要

基于小型紫外光谱仪原理,对一台紫外成像光谱仪进行了研究。设计了由离轴抛物面镜望远镜和单环面光栅光谱成像系统组成的方案。光学系统的优化是对环面光栅参数的优化处理。分析了光栅的光程函数和像差方程。得出了单环面光栅系统的完美消像散条件和成像条件。代数计算方法无法满足的这两个条件限制了光谱仪的视场和波段。引入遗传算法来解决该问题。设计了一台用于200 - 280nm的日盲紫外成像光谱仪以验证该设计方法。计算并模拟了最佳初始配置。设计了一个F/#为5.7、焦距为102mm且具有高空间分辨率的系统。在所需奈奎斯特频率(20 lp x mm(-1))的波段内,所有视场的调制传递函数(MTF)均大于0.65。设计结果表明,该光学系统理论可应用于高分辨率和光谱宽带的小型紫外成像光谱仪。

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