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Throughput of the Composite Infrared Spectrometer (CIRS) mid infrared (MIR) channel for the Cassini mission to Saturn

机译:复合红外光谱仪(CIRS)中红外(MIR)频道为土星的吞吐量

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The Composite Infrared Spectrometer (CIRS) of the Cassini mission to Saturn↑(1) has two interferometers covering the far infrared and mid infrared wavelength region. The instrument was aligned at ambient temperature, but operates at 170 Kelvin and has challenging interferometric alignment tolerances. Cryogenic alignment tests of the instrument indicated that it should suffer minimal degradation due to the cooldown from ambient to operational temperature. System level tests performed by the calibration team indicated a lower than expected signal level on the mid infrared (MIR) channel, while providing ambiguous optical throughput data. Therefore it became imperative to develop a metric that could be used to determine the instrument performance at both the instrument and system levels, at ambient and cryogenic temperature. Modulation efficiency and throughput measurements were performed and new analytical models developed to evaluate the status of the instrument. Methodologies are detailed, empirical and analytical data are reconciled and deviations from design values explained.
机译:Cassini Missed to Saturn↑(1)的复合红外光谱仪(CIR)具有覆盖远红外和中红外波长区域的两个干涉仪。该仪器在环境温度下对齐,但在170个开尔文中运行并具有挑战干涉对准公差。仪器的低温对准测试表明,由于从环境中的冷却到操作温度,它应该遭受最小的降解。由校准团队执行的系统级测试指示中红外(MIR)通道上的预期信号电平,同时提供模糊的光吞吐量数据。因此,开发可用于在环境和低温温度下使用可用于确定仪器和系统水平的仪器性能的指标。进行调制效率和吞吐量测量,并开发了新的分析模型,以评估仪器的状态。详细说明了方法,实证和分析数据与解释的设计值进行了协调和偏离。

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