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Advanced astigmatism-corrected tandem Wadsworth mounting for small-scale spectral broadband imaging spectrometer

机译:先进的像散校正串联式Wadsworth支架,用于小型光谱宽带成像光谱仪

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摘要

Tandem gratings of double-dispersion mount make it possible to design an imaging spectrometer for the weak light observation with high spatial resolution, high spectral resolution, and high optical transmission efficiency. The traditional tandem Wadsworth mounting is originally designed to match the coaxial telescope and large-scale imaging spectrometer. When it is used to connect the off-axis telescope such as off-axis parabolic mirror, it presents lower imaging quality than to connect the coaxial telescope. It may also introduce interference among the detector and the optical elements as it is applied to the short focal length and small-scale spectrometer in a close volume by satellite. An advanced tandem Wadsworth mounting has been investigated to deal with the situation. The Wadsworth astigmatism-corrected mounting condition for which is expressed as the distance between the second concave grating and the imaging plane is calculated. Then the optimum arrangement for the first plane grating and the second concave grating, which make the anterior Wadsworth condition fulfilling each wavelength, is analyzed by the geometric and first order differential calculation. These two arrangements comprise the advanced Wadsworth mounting condition. The spectral resolution has also been calculated by these conditions. An example designed by the optimum theory proves that the advanced tandem Wadsworth mounting performs excellently in spectral broadband.
机译:双色散安装的串联光栅使得可以设计一种用于空间微弱观测的成像光谱仪,具有高空间分辨率,高光谱分辨率和高光传输效率。传统的串联式Wadsworth支架最初设计为与同轴望远镜和大型成像光谱仪匹配。当使用它连接离轴抛物面镜等离轴望远镜时,与连接同轴望远镜相比,其成像质量较低。当卫星将近距离的短焦距和小型光谱仪应用于近距离焦距和小型光谱仪时,它还会在检测器和光学元件之间引入干扰。已经研究了一种先进的串联式Wadsworth支架来应对这种情况。计算Wadsworth像散校正的安装条件,该条件表示为第二凹面光栅与成像平面之间的距离。然后,通过几何和一阶微分计算,分析了使前沃兹沃思条件满足各个波长的第一平面光栅和第二凹面光栅的最佳布置。这两种布置包括高级Wadsworth安装条件。通过这些条件也可以计算出光谱分辨率。由最佳理论设计的一个例子证明,先进的串联Wadsworth安装在光谱宽带中表现出色。

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