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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Multispectral simultaneous diagnosis of Saturn’s aurorae throughout a planetary rotation
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Multispectral simultaneous diagnosis of Saturn’s aurorae throughout a planetary rotation

机译:土星的同时多光谱诊断极光在行星旋转

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[1] From 27 to 28 January 2009, the Cassini spacecraft remotely acquired combined observations of Saturn’s southern aurorae at radio, ultraviolet, and infrared wavelengths, while monitoring ion injections in the middle magnetosphere from energetic neutral atoms. Simultaneous measurements included the sampling of a full planetary rotation, a relevant timescale to investigate auroral emissions driven by processes internal to the magnetosphere. In addition, this interval coincidentally matched a powerful substorm-like event in the magnetotail, which induced an overall dawnside intensification of the magnetospheric and auroral activity. We comparatively analyze this unique set of measurements to reach a comprehensive view of kronian auroral processes over the investigated timescale. We identify three source regions for the atmospheric aurorae, including a main oval associated with the bulk of Saturn Kilometric Radiation (SKR), together with polar and equatorward emissions. These observations reveal the coexistence of corotational and subcorototational dynamics of emissions associated with the main auroral oval. Precisely, we show that the atmospheric main oval hosts short-lived subcorotating isolated features together with a bright, longitudinally extended, corotating region locked at the southern SKR phase. We assign the substorm-like event to a regular, internally driven, nightside ion injection possibly triggered by a plasmoid ejection. We also investigate the total auroral energy budget, from the power input to the atmosphere, characterized by precipitating electrons up to 20 keV, to its dissipation through the various radiating processes. Finally, through simulations, we confirm the search-light nature of the SKR rotational modulation and we show that SKR arcs relate to isolated auroral spots. We characterize which radio sources are visible from the spacecraft and we estimate the fraction of visible southern power to a few percent. The resulting findings are discussed in the frame of pending questions as the persistence of a corotating field-aligned current system within a subcorotating magnetospheric cold plasma, the occurrence of plasmoid activity, and the comparison of auroral fluxes radiated at different wavelengths.
机译:[1]从2009年1月27日至28日,卡西尼飞船远程获取相结合观测土星的极光在南部收音机、紫外和红外波段,同时监测离子注入在中间从充满活力的中性原子磁气圈。同时测量包括抽样有关完整的行星旋转时间尺度研究极光排放驱动的通过流程内部磁场。另外,这个间隔巧合的是匹配的强大的磁尾substorm-like事件,诱导一个整体dawnside强化的磁性层的极光活动。比较分析这组独特的测量达成全面的观点在调查kronian极光过程时间表。大气极光,包括主要的椭圆形与大部分土星公里的辐射(SKR),加上极地和朝赤道方向排放。corotational和共存subcorototational动态排放与主要的极光椭圆。我们表明,大气主要椭圆形主机短暂的subcorotating孤立的特性加上明亮,纵向扩展,共转区域锁定在SKR南部阶段。普通,内部驱动,阴面离子注射可能触发等离子粒团弹射。能源预算,从电源输入大气中,沉淀的特征电子20 keV,耗散通过各种辐射过程。通过模拟,我们确认探照灯SKR旋转调制的本质和我们表明SKR弧与孤立的极光斑点。可见从航天器和我们估计几部分可见南部权力百分比。持久性未决问题的框架当前系统的共转field-aligned在subcorotating磁性层的冷等离子体,等离子粒团活动的发生极光通量辐射的比较不同的波长。

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