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Calibration techniques for the NASA ICON Extreme Ultraviolet Spectrograph (EUV)

机译:NASA图标极端紫外光谱仪(EUV)的校准技术

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The Ionospheric Connection Explorer (ICON) is a NASA Heliophysics Explorer Mission designed to study the ionosphere. ICON will examine the Earth's upper atmosphere to better understand the relationship between Earth weather and space-weather drivers. ICON will accomplish its science objectives using a suite of 4 instruments, one of which is the Extreme Ultraviolet Spectrograph (EUV). EUV will measure daytime altitude intensity profile and spatial distribution of ionized oxygen emissions (O~+ at 83.4 nm & 61.7 nm) on the limb in the thermosphere (100 to 500 km tangent altitude). EUV is a single-optic imaging spectrometer that observes in the extreme ultraviolet region of the spectrum. In this paper, we describe instrumental performance calibration measurement techniques and data analysis for EUV. Various measurements including Lyman-α scattering, instrumental and component efficiency, and field-of-view alignment verification were done in custom high-vacuum ultraviolet calibration facilities. Results from the measurements and analysis will be used to understand the instrument performance during the in-flight calibration and observations after launch.
机译:电离层连接资源管理器(图标)是NASA Heliophysics Explorer任务,旨在研究电离层。图标将检查地球的高层大气,以更好地了解地球天气和空间天气司机之间的关系。图标将使用4个仪器套件来完成其科学目标,其中一个是极端的紫外光谱仪(EUV)。 EUV将测量热圈中肢体的白天高度强度曲线和离子氧排放(O〜+在83.4nm&61.7nm)的空间分布(100至500 km切线高度)。 EUV是一种单光学成像光谱仪,观察到光谱的极端紫外区域。在本文中,我们描述了EUV的仪器性能校准测量技术和数据分析。在定制高真空紫外线校准设施中,各种测量包括Lyman-α散射,仪器和部件效率,以及视野对准验证。测量和分析的结果将用于了解在启动后飞行中的飞行校准和观察中的仪器性能。

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