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Shear/defocus sensitivity of the mid infrared channel (MIR) of the Composite infrared spectrometer (CIRS) for the Cassini mission to Saturn

机译:复合红外光谱仪(CIRS)中红外通道(MIR)的剪切/散焦敏感性为土星的Cassini使命

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The Composite Infrared Spectrometer (CIRS) of the Cassini mission to Saturn has two interferometers covering the far infrared and mid infrared wavelength region. The mid infrared wavelength interferometer has a focal plane consisting of a germanium focus lens and HgCdTe array. System level calibration of the CIRS Flight Unit indicated a discrepancy between the expected and actual signal levels. Testing on the CIRS breadboard and Engineering Unit indicated that defocus of the germanium lens could significantly reduce the modulation efficiency of the interferometer in the presence of a moderate degree of wavefront shear. Defocus of the lens in the focal plane was of concern because of the temperature dependence of the index of refraction of germanium and the nominal operation temperature of 170 K. The shear/defocus interaction was extensively investigated and correlated to a newly developed analytical model. It was eventually determined that the CIRS instrument was in focus, had no appreciable wavefront shear and was operating near theoretical limits. The shear/defocus effect is however, of considerable interest, since it has not been described in previous literature on interferometers.
机译:Cassini Missed to Saturn的复合红外光谱仪(CIR)有两个干涉仪,覆盖着远红外和中红外波长区域。中红外波长干涉仪具有由锗聚焦镜头和HGCDTE阵列组成的焦平面。 CIRS飞行单元的系统级别校准指示预期和实际信号电平之间的差异。在CIRS面包板和工程单元上测试表明,在存在中等程度的波前剪切的情况下,锗透镜的散焦可以显着降低干涉仪的调制效率。由于锗折射率的温度依赖性和170k的标称操作温度的温度依赖性,焦点平面中的镜片的灰度是值得关注的。剪切/散焦相互作用广泛地研究并与新开发的分析模型相关。最终确定了CIRS仪器焦点,没有明显的波前剪切,并在理论极限附近运行。然而,剪切/散焦效应具有相当大的兴趣,因为它尚未在先前的干涉仪上描述。

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