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Design and analysis of conical diffraction imaging spectrometer with high spectral resolution and wide spectral dispersion range

机译:具有高光谱分辨率和宽谱色散范围的锥形衍射成像光谱仪的设计与分析

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Astigmatism and distortion aberrations of conventional Offner-type imaging spectrometer with an in-plane diffraction grating will increase dramatically as its spectral dispersion width so that such spectroscopic mounting is usually suitable for such situation that both slit length and spectrum width are medium and that the spectrum width is less than the slit length. To short slit and high dispersion, novel conical diffraction Offner mounting is more appropriate. Based on the operation principle of this kind mounting, a set of optimized designs, which the focal ratio is 4,the spectral region from 400nm to 900nm, the slit length from 0.5mm to 1mm, and the dispersion width from 9.8mm to 28mm are obtained under the same optical size. To evaluate the imaging quality of the designed and to get the relation between slit length and dispersion width, the merit function and spectral response function are considered. The results show that conical diffraction Offner imaging spectrometers can image well while the spectrum width is less than the slit length, but no more than its 20 times.
机译:具有面内衍射光栅的传统offner型成像光谱仪的散光和变形像差将随着其光谱分子宽度而显着增加,使得这种光谱安装通常适用于狭缝长度和光谱宽度的这种情况,以及频谱宽度小于狭缝长度。短切口和高分散,新颖的锥形衍射越容易安装。基于这种安装的操作原理,一组优化设计,焦距为4,光谱区域为400nm至900nm,狭缝长度为0.5mm至1mm,分散宽度为98mm至28mm在相同的光学尺寸下获得。为了评估设计的成像质量和狭缝长度和色散宽度之间的关系,考虑了优异功能和光谱响应函数。结果表明,锥形衍射越野成像光谱仪可以很好地图像,而频谱宽度小于狭缝长度,但不超过其20倍。

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