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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Origin of Saturn's aurora: Simultaneous observations by Cassini and the Hubble Space Telescope
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Origin of Saturn's aurora: Simultaneous observations by Cassini and the Hubble Space Telescope

机译:土星极光的起源:同步卡西尼号和哈勃太空观测望远镜

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摘要

Outer planet auroras have been imaged for more than a decade, yet understanding their physical origin requires simultaneous remote and in situ observations. The first such measurements at Saturn were obtained in January 2007, when the Hubble Space Telescope imaged the ultraviolet aurora, while the Cassini spacecraft crossed field lines connected to the auroral oval in the high-latitude magnetosphere near noon. The Cassini data indicate that the noon aurora lies in the boundary between open- and closed-field lines, where a layer of upward-directed field-aligned current flows whose density requires downward acceleration of magnetospheric electrons sufficient to produce the aurora. These observations indicate that the quasi-continuous main oval is produced by the magnetosphere-solar wind interaction through the shear in rotational flow across the open-closed-field line boundary.
机译:外地球极光一直成像十多年,但了解他们的身体需要同步远程和就地起源观察。土星得到2007年1月,当哈勃太空望远镜成像紫外线极光,卡西尼号飞船了电场线连接到极光椭圆的高纬度地区磁气圈接近中午。卡西尼号数据显示,中午极光谎言在开放和闭域之间的边界行,一层upward-directedfield-aligned电流的密度需要向下的加速度的磁性层的电子足以产生极光。观察结果表明,激射主要椭圆形是magnetosphere-solar产生的通过旋转的剪切风相互作用流在open-closed-field边界线。

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