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Retrieval of Lower Thermospheric Temperatures from O_2 A Band Emission: The MIGHTI Experiment on ICON

机译:从O_2的乐队排放中检索较低的热散温度:图标上的MINTI实验

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The Michelson Interferometer for Global High-resolution Thermospheric Imaging (MIGHTI) is a satellite experiment scheduled to launch on NASA's Ionospheric Connection Explorer (ICON) in 2018. MIGHTI is designed to measure horizontal neutral winds and neutral temperatures in the terrestrial thermosphere. Temperatures will be inferred by imaging the molecular oxygen Atmospheric band (A band) on the limb in the lower thermosphere. MIGHTI will measure the spectral shape of the A band using discrete wavelength channels to infer the ambient temperature from the rotational envelope of the band. Here we present simulated temperature retrievals based on the as-built characteristics of the instrument and the expected emission rate profile of the A band for typical daytime and nighttime conditions.We find that for a spherically symmetric atmosphere, the measurement precision is 1 K between 90-105 km during the daytime whereas during the nighttime it increases from 1 K at 90 km to 3 K at 105 km. We also find that the accuracy is 2 K to 11 K for the same altitudes. The expected MIGHTI temperature precision is within the measurement requirements for the ICON mission.
机译:全球高分辨率热散影像(MINGII)的迈克尔森干涉仪是在2018年在美国宇航局的电离层连接探险仪(图标)上发布的卫星实验。MINGEI旨在测量地面热圈的水平中性风和中性温度。通过在较低的热层中的肢体上成像来推断温度。 Mighti将使用离散波长通道测量A带的光谱形状,从频带的旋转包络推断环境温度。在这里,我们基于仪器的仪器的仿真特性以及用于典型的白天和夜间条件的乐队的预期发射率曲线的模拟温度检索。我们发现对于球形对称的气氛,测量精度为90之间1 k在白天 - 105公里,而在夜间期间,它在105公里的夜间增加到90公里到3 k。我们还发现,对于相同的高度,精度为2 k至11 k。预期的强度温度精度是图标任务的测量要求。

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