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The far-ultraviolet main auroral emission at Jupiter - Part 1:dawn-dusk brightness asymmetries

机译:木星的远紫外线主极光发射-第1部分:黎明-黄昏亮度不对称

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摘要

The main auroral emission at Jupiter generally appears as a quasi-closed curtain centered around the magnetic pole. This auroral feature, which accounts for approximately half of the total power emitted by the aurorae in the ultraviolet range, is related to corotation enforcement currents in the middle magnetosphere. Early models for these currents assumed axisymmetry, but significant local time variability is obvious on any image of the Jovian aurorae. Here we use far-UV images from the Hubble Space Telescope to further characterize these variations on a statistical basis. We show that the dusk side sector is ~ 3 times brighter than the dawn side in the southern hemisphere and ~ 1.1 brighter in the northern hemisphere, where the magnetic anomaly complicates the interpretation of the measurements. We suggest that such an asymmetry between the dawn and the dusk sectors could be the result of a partial ring current in the nightside magnetosphere.
机译:木星上的主要极光发射通常表现为以磁极为中心的准闭幕。这种极光特征大约占极光在紫外线范围内发射的总功率的一半,与中磁层中的同位强制电流有关。这些电流的早期模型假定是轴对称的,但是在木星极光的任何图像上,明显的局部时间变化都是明显的。在这里,我们使用来自哈勃太空望远镜的远紫外图像来进一步统计这些变化的特征。我们发现,在南半球,黄昏侧的部分比黎明的一侧亮3倍,在北半球,亮的一侧是〜1.1亮,这是因为磁异常使测量结果的解释变得复杂。我们建议,黎明和黄昏之间的这种不对称性可能是夜间磁层中部分环形电流的结果。

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