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Comparing Electron Energetics and UV Brightness in Jupiters Northern Polar Region During Juno Perijove 5

机译:朱诺·佩里约夫5号期间木星北极地区电子能量和紫外线亮度的比较

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摘要

We compare electron and UV observations mapping to the same location in Jupiter's northern polar region, poleward of the main aurora, during Juno perijove 5. Simultaneous peaks in UV brightness and electron energy flux are identified when observations map to the same location at the same time. The downward energy flux during these simultaneous observations was not sufficient to generate the observed UV brightness; the upward energy flux was. We propose that the primary acceleration region is below Juno's altitude, from which the more intense upward electrons originate. For the complete interval, the UV brightness peaked at ~240 kilorayleigh (kR); the downward and upward energy fluxes peaked at 60 and 700 mW/m2, respectively. Increased downward energy fluxes are associated with increased contributions from tens of keV electrons. These observations provide evidence that bidirectional electron beams with broad energy distributions can produce tens to hundreds of kilorayleigh polar UV emissions.
机译:我们比较了在朱诺·皮约韦夫5号期间电子和紫外线观测到的映射到木星北极地区,主极地极的同一位置的情况。 。在这些同时观察中,向下的能量通量不足以产生观察到的UV亮度。向上的能量通量是。我们建议主要的加速区域在朱诺的高度以下,从该区域开始产生更强烈的向上电子。在整个间隔内,UV亮度在〜240千瑞(kR)处达到峰值;向下和向上的能量通量分别达到60和700 mW / m 2 的峰值。向下的能量通量增加与数十个keV电子的贡献增加有关。这些观察结果提供了证据,表明具有宽泛能量分布的双向电子束可以产生数十至数百千瑞的极性紫外线。

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