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Effects of shear, defocus, and wavefront error on the theoretical performance of the composite infrared spectrometer for Cassini

机译:剪切,散焦和波前误差误差对Cassini复合红外光谱仪的理论性能

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The combined effects on performance of shear between the two m-ms, defocus of the detector, and difference in wavefront between the two arms of a Fourier transform spectrometer using cube corner retroreflectors were investigated. Performance was characterized by the amplitude of the fringe signals coming from a detector as the path-length difference was scanned. A closed-form expression was found for the combined effects of shear ,and defocus, and it was found that defocus had no effect in the absence of shear. The effect of wavefront error was modeled numerically and assumed to be independent of shear and defocus. Results were compared with measurements made on the breadboard ,and engineering model of the Composite Infrared Spectrometer for the Cassini mission to Saturn, and good agreement was found.
机译:研究了使用立方体角逆向反射器的傅立叶变换光谱仪的两个M-MS,探测器之间的剪切与傅立叶频率的两个臂之间的剪切性能的综合影响。由于扫描路径长度差异,所以性能的特征在于来自检测器的边缘信号的幅度。发现剪切和散焦的组合效果的闭合表达,发现散焦在没有剪切的情况下没有效果。波前误差的效果在数字上进行了模拟,并假设与剪切和散焦无关。将结果与在面包板上的测量结果进行比较,以及为土星的Cassini使命的复合红外光谱仪的工程模型,并发现了良好的协议。

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