论文标题

使用哈勃太空望远镜观测来绘制Ganymede紫外线极光的亮度

Mapping the Brightness of Ganymede's Ultraviolet Aurora using Hubble Space Telescope Observations

论文作者

Marzok, Alexander, Schlegel, Stehpan, Saur, Joachim, Roth, Lorenz, Grodent, Denis, Strobel, Darrell F., Retherford, Kurt D.

论文摘要

我们分析了1998年至2017年间用太空望远镜成像谱仪(STIS)制成的ganymede的Hubble太空望远镜(HST)观察结果,以产生1356A的Ganymede的氧气排放的亮度图。我们的Mercator预测,我们的Mercator预测地图表明,沿Ganymede的Northern和Southern Auror auror oeral ovals的亮度表明,与长期相同。为了量化围绕甘尼德的这种变化,我们研究了以36 $^{\ circ} $ - 以下jovian(0 $^{\ circ} $ w)为中心的36 $^{\ circ} $ - 宽的经度走廊​​(90 $^{\ circ} $ w) w)中央纵向。在北半球,与落后的和前导的走廊相比,在犹太和反郡的走廊中,极光椭圆形的亮度为3.7 $ \ pm $ 0.4倍。南部椭圆形的总体比北椭圆形更明亮,与落后和领先的走廊相比,亚副郡和反霍维亚的走廊上只有2.5 $ \ pm $ 0.2倍。这表明,甘氏肌的极光椭圆形在领先侧(血浆下游侧)和后侧(等离子体上游侧)的极光新闻中结构很强。我们还发现,相对于270 $^\ circ $ meridian,亮度并不对称,而是$ \ sim $ 20 $^\ circ $转移到了面向Jovian的半球。我们的地图对于随后的研究将很有用,以了解在Ganymede非旋转驱动的亚alfvénic磁层中产生极光的过程。

We analyze Hubble Space Telescope (HST) observations of Ganymede made with the Space Telescope Imaging Spectrograph (STIS) between 1998 and 2017 to generate a brightness map of Ganymede's oxygen emission at 1356 A. Our Mercator projected map demonstrates that the brightness along Ganymede's northern and southern auroral ovals strongly varies with longitude. To quantify this variation around Ganymede, we investigate the brightness averaged over 36$^{\circ}$-wide longitude corridors centered around the sub-Jovian (0$^{\circ}$ W), leading (90$^{\circ}$ W), anti-Jovian (180$^{\circ}$ W), and trailing (270$^{\circ}$ W) central longitudes. In the northern hemisphere, the brightness of the auroral oval is 3.7 $\pm$ 0.4 times lower in the sub-Jovian and anti-Jovian corridors compared to the trailing and leading corridors. The southern oval is overall brighter than the northern oval, and only 2.5 $\pm$ 0.2 times fainter on the sub- and anti-Jovian corridors compared to the trailing and leading corridors. This demonstrates that Ganymede's auroral ovals are strongly structured in auroral crescents on the leading side (plasma downstream side) and on the trailing side (plasma upstream side). We also find that the brightness is not symmetric with respect to the 270$^\circ$ meridian, but shifted by $\sim$20$^\circ$ towards the Jovian-facing hemisphere. Our map will be useful for subsequent studies to understand the processes that generate the aurora in Ganymede's non-rotationally driven, sub-Alfvénic magnetosphere.

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