首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Magnetic field structure of Saturn's dayside magnetosphere and its mapping to the ionosphere: Results from ring current modeling
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Magnetic field structure of Saturn's dayside magnetosphere and its mapping to the ionosphere: Results from ring current modeling

机译:土星白天磁层的磁场结构及其对电离层的映射:环流模拟的结果

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摘要

Ring current modeling in Saturn's magnetosphere using Pioneer-11, Voyager, and Cassini data has shown that the size and strength of the current system grows with the extension of the magnetosphere, governed by the solar wind dynamic pressure. Here we show that the consequent middle magnetosphere field is quasi-dipolar in form when the magnetosphere is strongly compressed, but extends into a magnetodisc when it is strongly expanded. We also show that the region occupied by the modeled ring current corresponds to an essentially fixed shell of field lines that expands and contracts with the size of the system, thus mapping to an almost fixed co-latitude range in Saturn's ionosphere, between ~14° and ~20° in the northern hemisphere, and ~16° and ~22° in the southern hemisphere. The median dayside UV auroral oval is found to map from near the poleward edge of the modeled ring current toward the boundary of open field lines at smaller co-latitudes. In the equatorial plane this corresponds to a layer ~2–5 Saturn radius wide (depending on magnetosphere size), extending from near the outer edge of the ring current to the vicinity of the magnetopause.
机译:利用Pioneer-11,Voyager和Cassini数据在土星磁层的环流建模表明,电流系统的大小和强度随磁层的扩展而增长,这取决于太阳风动压力。在这里,我们表明,当磁层被强烈压缩时,随之产生的中间磁层磁场的形式为准偶极子,而当其强烈扩张时,其延伸为磁极。我们还表明,模型环流所占据的区域对应于磁力线的基本固定壳,该磁力线随系统的大小扩展和收缩,因此映射到土星电离层中几乎固定的同纬度范围,介于〜14°之间在北半球约20°,在南半球约16°和〜22°。发现中值日间UV极光椭圆形从模拟环流的极向边缘附近朝较小共纬度的开放磁场线的边界映射。在赤道平面上,这相当于一个约2-5土星半径的层(取决于磁层大小),从环形电流的外边缘附近延伸到磁层顶附近。

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