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Michelson Interferometer for Global High-Resolution Thermospheric Imaging (MIGHTI): Instrument Design and Calibration

机译:全球高分辨率热部分成像的迈克尔森干涉仪(MINGII):仪器设计和校准

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The Michelson Interferometer for Global High-resolution Thermospheric Imaging (MIGHTI) instrument was built for launch and operation on the NASA Ionospheric Connection Explorer (ICON) mission. The instrument was designed to measure thermospheric horizontal wind velocity profiles and thermospheric temperature in altitude regions between 90 km and 300 km, during day and night. For the wind measurements it uses two perpendicular fields of view pointed at the Earth's limb, observing the Doppler shift of the atomic oxygen red and green lines at 630.0 nm and 557.7 nm wavelength. The wavelength shift is measured using field-widened, temperature compensated Doppler Asymmetric Spatial Heterodyne (DASH) spectrometers, employing low order echelle gratings operating at two different orders for the different atmospheric lines. The temperature measurement is accomplished by a multichannel photometric measurement of the spectral shape of the molecular oxygen A-band around 762 nm wavelength. For each field of view, the signals of the two oxygen lines and the A-band are detected on different regions of a single, cooled, frame transfer charge coupled device (CCD) detector. On-board calibration sources are used to periodically quantify thermal drifts, simultaneously with observing the atmosphere. The MIGHTI requirements, the resulting instrument design and the calibration are described.
机译:为全球高分辨率热散影(MINGEI)仪器的Michelson干涉仪是为NASA电离层连接资源管理器(图标)任务的发射和运行而设计的。该仪器旨在测量热散,在白天和夜间在90公里和300公里之间的海拔地区的热散,热散温度。对于风测量,它使用地球肢体指向的两个垂直视野,观察原子氧红色和绿线的多普勒偏移,在630.0nm和557.7nm波长下。使用现场加宽的温度补偿多普勒不对称空间外差(DASH)光谱仪测量波长偏移,采用低阶梯定光栅,在不同大气线的两个不同订单中运行。温度测量通过多通道光度测量的分子氧A频带的光谱法测量约762nm波长。对于每个视野,在单个冷却的帧传送电荷耦合装置(CCD)检测器的不同区域上检测两个氧线和A频带的信号。板载校准源用于定期定量热漂移,同时观察大气。描述了MINTI要求,所得到的仪器设计和校准。

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