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On-board calibration of the spectral response functions of the Advanced Baseline Imager's thermal IR channels by observation of the planet Mercury

机译:通过观测水星,对高级基线成像仪的热红外通道的光谱响应功能进行车载校准

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The Advanced Baseline Imager (ABI) will image Earth in 16 spectral channels, including 10 thermal IR (TIR) channels. The instantaneous field of view (IFOV) of each TIR detector element is (56 urad)2. The ABI has an onboard full-aperture blackbody, the Internal Calibration Target (ICT), used in conjunction with deep space looks to calibrate the ABI's TIR channels. The ICT is only observed over a small range of temperatures and at one specific pair of reflection angles from the ABI's two scan mirrors. The sunlit area on Mercury's surface underfills the IFOV's of the ABI's TIR channels, but has a much higher range of characteristic temperatures than the ICT, so its radiation is weighted more strongly toward shorter wavelengths. Comparison of a TIR channel's responses to the ICT and to Mercury provides a sensitive means to evaluate variations in spectral response functions among detector elements, across the ABI's field of regard, and among instruments on different satellites. Observations of Mercury can also verify co-registration among the ABI's atmospheric absorption channels that do not observe features on Earth's surface. The optimal conditions for viewing Mercury typically occur during one or two intervals of a few weeks each year when it traverses the ABI's FOR (-10.5° < declination < +10.5°) with an elongation angle from the Sun of at least 20.5°.
机译:高级基线成像仪(ABI)将在16个光谱通道(包括10个热红外(TIR)通道)中对地球成像。每个TIR检测器元件的瞬时视场(IFOV)为(56 urad)2。 ABI有一个机载全孔径黑体,即内部校准目标(ICT),可与深空外观配合使用来校准ABI的TIR通道。 ICT仅在很小的温度范围内以及从ABI的两个扫描镜以一对特定的反射角观察到。水星表面的阳光照射区域未完全填充ABI TIR通道的IFOV,但特征温度范围比ICT高得多,因此其辐射更倾向于短波长。 TIR频道对ICT和汞的响应的比较提供了一种灵敏的方法,可以评估探测器元件之间,ABI视场范围内以及不同卫星上仪器之间的光谱响应函数变化。观察水星还可以验证ABI大气吸收通道之间的共配准,这些通道不观测地球表面的特征。观看汞的最佳条件通常发生在每年几周的一两次间隔中,这是当它横穿ABI的FOR(-10.5°<偏角<+ 10.5°)且与太阳的延伸角至少为20.5°时。

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