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首页> 外文期刊>Annales Geophysicae >The far-ultraviolet main auroral emission at Jupiter - Part 2: Vertical emission profile
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The far-ultraviolet main auroral emission at Jupiter - Part 2: Vertical emission profile

机译:木星的远紫外线主极光发射-第2部分:垂直发射剖面

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The aurorae at Jupiter are made up of many different features associated with a variety of generation mechanisms. The main auroral emission, also known as the main oval, is the most prominent of them as it accounts for approximately half of the total power emitted by the aurorae in the ultraviolet range. The energy of the precipitating electrons is a crucial parameter to characterize the processes at play which give rise to these auroral emissions, and the altitude of the emissions directly depends on this energy. Here we make use of far-UV (FUV) images acquired with the Advanced Camera for Surveys on board the Hubble Space Telescope and spectra acquired with the Space Telescope Imaging Spectrograph to measure the vertical profile of the main emissions. The altitude of the brightness peak as seen above the limb is similar to 400 km, which is significantly higher than the 250 km measured in the post-dusk sector by Galileo in the visible domain. However, a detailed analysis of the effect of hydrocarbon absorption, including both simulations and FUV spectral observations, indicates that FUV apparent vertical profiles should be considered with caution, as these observations are not incompatible with an emission peak located at 250 km. The analysis also calls for spectral observations to be carried out with an optimized geometry in order to remove observational ambiguities.
机译:木星的极光由与多种生成机制相关的许多不同特征组成。主要的极光发射,也称为主要的椭圆形,是其中最突出的,因为它占极光在紫外线范围内发射的总功率的大约一半。沉淀电子的能量是表征产生这些极光发射的过程的关键参数,并且发射的高度直接取决于该能量。在这里,我们利用在哈勃太空望远镜上使用高级勘测相机获取的远紫外线(FUV)图像和通过太空望远镜成像光谱仪获取的光谱来测量主要辐射的垂直剖面。从肢体上方看到的亮度峰值的高度大约为400 km,这明显高于Galileo在黄昏地区在可见范围内测得的250 km。但是,对碳氢化合物吸收作用的详细分析(包括模拟和FUV光谱观察)表明,应谨慎考虑FUV的表观垂直剖面,因为这些观察与250 km处的排放峰不相容。分析还要求以优化的几何形状进行光谱观察,以消除观察上的歧义。

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