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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >An auroral oval at the footprint of Saturn's kilometric radio sources, colocated with the UV aurorae
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An auroral oval at the footprint of Saturn's kilometric radio sources, colocated with the UV aurorae

机译:土星公里辐射源足迹上的一个​​极光椭圆形,与紫外线极光并置

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Similarly to other magnetized planets, Saturn displays auroral emissions generated by accelerated electrons gyrating around high-latitude magnetic field lines. They mainly divide in ultraviolet (UV) and infrared (IR) aurorae, excited by electron collisions with the upper atmosphere, and Saturn's kilometric radiation (SKR), radiated from higher altitudes by electron-wave resonance. Whereas spatially resolved UV and IR images of atmospheric aurorae reveal a continuous auroral oval around each pole, the SKR source locus was only indirectly constrained by the Voyager radio experiment to a limited local time (LT) range on the morningside, leading to interpretation of the SKR modulation as a fixed flashing light. Here, we present resolved SKR maps derived from the Cassini Radio and Plasma Wave Science (RPWS) experiment using goniopolarimetric techniques. We observe radio sources all around the planet, organized along a high-latitude continuous auroral oval. Observations of the Hubble Space Telescope obtained in January 2004 and January 2007 have been compared to simultaneous and averaged Cassini-RPWS measurements, revealing that SKR and UV auroral ovals are very similar, both significantly enhanced on the dawnside. These results imply that the SKR and atmospheric aurorae are triggered by the same populations of energetic electron beams, requiring a unified model of particle acceleration and precipitation on Saturn.
机译:与其他磁化行星相似,土星显示由加速电子围绕高纬度磁力线旋转产生的极光发射。它们主要分为紫外线(UV)和红外线(IR)极光,它们通过与高层大气的电子碰撞而激发,还有土星的千米辐射(SKR),它是通过电子波共振从更高的高度辐射出来的。大气极光的空间分辨UV和IR图像显示每个极点周围都有连续的极光椭圆,而Voyager无线电实验仅间接地将SKR源轨迹限制在早晨的有限本地时间(LT)范围内,从而解释了SKR调制作为固定的闪光灯。在这里,我们介绍了使用测角极化技术从卡西尼无线电和等离子波科学(RPWS)实验获得的已解析SKR图。我们观察到沿着高纬度连续极光椭圆组织的整个地球上的无线电源。将2004年1月和2007年1月获得的哈勃太空望远镜的观测结果与同时进行的Cassini-RPWS平均测量值进行了比较,发现SKR和UV极光椭圆形非常相似,在黎明时都显着增强。这些结果表明,SKR和大气极光是由相同数量的高能电子束触发的,因此需要一个统一的粒子加速和土星降水模型。

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