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Analysis of the optical aberration effect on spectral resolution of coded aperture spectroscopy

机译:光学像差对编码孔径光谱仪光谱分辨率的影响分析

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The coded aperture spectrometer can achieve high throughput and high spectral resolution by replacing the traditional single slit with two-dimensional array slits manufactured by MEMS technology. However, the sampling accuracy of coding spectrum image will be distorted due to the existence of system aberrations, machining error, fixing errors and so on, resulting in the declined spectral resolution. The influence factor of the spectral resolution come from the decode error, the spectral resolution of each column, and the column spectrum offset correction. For the Czerny-Turner spectrometer, the spectral resolution of each column most depend on the astigmatism, in this coded aperture spectroscopy, the uncorrected astigmatism does result in degraded performance. Some methods must be used to reduce or remove the limiting astigmatism. The curvature of field and the spectral curvature can be result in the spectrum revision errors.
机译:通过用MEMS技术制造的二维阵列狭缝代替传统的单狭缝,编码孔径光谱仪可以实现高通量和高光谱分辨率。但是,由于系统像差,加工误差,固定误差等的存在,编码光谱图像的采样精度将会失真,从而导致光谱分辨率下降。频谱分辨率的影响因素来自解码误差,每列的频谱分辨率和列频谱偏移校正。对于Czerny-Turner光谱仪,每根色谱柱的光谱分辨率最取决于像散,在此编码孔径光谱中,未经校正的像散会导致性能下降。必须使用某些方法来减少或消除极限散光。场曲和光谱曲率会导致光谱修正误差。

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