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Magnetic reconnection at Neptune's magnetopause

机译:在海王星的磁层磁场重联

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What we know about the magnetosphere of the outermost planet, Neptune, is primarily based on data taken during the Voyager 2 flyby in 1989. Establishing how Neptune's magnetosphere interacts with the solar wind is crucial for understanding the dynamics of the system. Here we assess how magnetic reconnection couples the solar wind to Neptune's magnetosphere, using analytical modeling that was recently applied to the case of Uranus. The modeling suggests that typical near-Neptune solar wind parameters make conditions at Neptune's magnetopause less favorable for magnetic reconnection than at the magnetopause boundary of any other solar system magnetosphere. The location of reconnection sites on Neptune's magnetopause is expected to be highly sensitive to planetary longitude and season, as well as interplanetary magnetic field (IMF) orientation, which is similar to the situation at Uranus. Also similar to past Uranus results, the present Neptune modeling indicates a seasonal effect, where one of the two dominant (Parker spiral) IMF orientations produces more favorable conditions for magnetopause reconnection than the other near equinox. We estimate the upper limit of the reconnection voltage applied to Neptune's magnetosphere as 35 kV (the typical voltage is expected to be considerably lower). Further progress in understanding the solar wind-magnetosphere interaction at Neptune requires other coupling mechanisms to be considered, as well as how reconnection operates at high plasma β.
机译:我们所知的磁气圈外层行星海王星,主要是基于数据在旅行者2号在1989年飞越。确定海王星的磁场与太阳风相互作用是至关重要的理解系统的动力学。评估夫妇磁场重联太阳风海王星的磁层,使用最近应用于分析建模天王星。典型near-Neptune太阳风参数条件在海王星的磁层更少有利于比磁场重联磁层边界的任何其他太阳系磁气圈。预计在海王星的磁层对行星经度和高度敏感季节,行星际磁场(IMF)取向,这是相似的在天王星的情况。结果,目前的海王星建模表示季节性影响,两个主要的国家之一(帕克螺旋)国际货币基金组织的方向产生更多有利条件对磁层重新连接比其他equinox附近。估计重新连接的上限电压应用于海王星的磁气圈35预计kV(典型的电压要低得多)。了解太阳能wind-magnetosphere在海王星的交互需要其他耦合机制被认为是,以及如何做重新连接在高血浆β。

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