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The extreme ultraviolet imager investigation for the IMAGE mission [Review]

机译:IMAGE任务的极紫外成像仪研究[评论]

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The Extreme Ultraviolet Imager (EUV) of the IMAGE Mission will study the distribution of He+ in Earth's plasmasphere by detecting its resonantly-scattered emission at 30.4 nm. It will record the structure and dynamics of the cold plasma in Earth's plasmasphere on a global scale. The 30.4-nm feature is relatively easy to measure because it is the brightest ion emission from the plasmasphere, it is spectrally isolated, and the background at that wavelength is negligible. Measurements are easy to interpret because the plasmaspheric He+ emission is optically thin, so its brightness is directly proportional to the He+ column abundance. Effective imaging of the plasmaspheric He+ requires global 'snapshots' in which the high apogee and the wide field of view of EUV provide in a single exposure a map of the entire plasmasphere. EUV consists of three identical sensor heads, each having a field of view 30 degrees in diameter. These sensors are tilted relative to one another to cover a fan-shaped field of 84 degrees x30 degrees, which is swept across the plasmasphere by the spin of the satellite. EUV's spatial resolution is 0.6 degrees or similar to 0.1 R-E in the equatorial plane seen from apogee. The sensitivity is 1.9 count s(-1) Rayleigh(-1), sufficient to map the position of the plasmapause with a time resolution of 10 min. [References: 34]
机译:IMAGE任务的极紫外成像仪(EUV)将通过检测He +在30.4 nm处的共振散射发射来研究He +在地球等离子层中的分布。它将在全球范围内记录地球等离子层中冷等离子体的结构和动力学。 30.4-nm特征相对容易测量,因为它是等离子层发出的最亮的离子,它在光谱上是隔离的,并且在该波长下的背景可以忽略不计。测量很容易解释,因为等离子层He +的发射很薄,因此其亮度与He +柱的丰度成正比。对等离子层He +进行有效成像需要全局“快照”,其中高远点和EUV的宽视野可以在一次曝光中提供整个等离子层的地图。 EUV由三个相同的传感器头组成,每个传感器头的视场直径均为30度。这些传感器相对于彼此倾斜,以覆盖84度x 30度的扇形场,该场通过卫星的旋转扫过等离子层。从最高点看,EUV的空间分辨率为0.6度或与赤道面的0.1 R-E相似。灵敏度为1.9 count s(-1)Rayleigh(-1),足以以10分钟的时间分辨率映射血浆暂停的位置。 [参考:34]

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