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Jupiter's Sheared Flow Unstable Magnetopause Boundary Observed by Juno

机译:Jupiter's Sheared Flow Unstable Magnetopause Boundary Observed by Juno

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The interaction between the solar wind and giant magnetospheres (i.e., Jupiter's and Saturn's magnetospheres) is fundamentally important for magnetospheric physics, in which the viscous interaction (presumably driven by the Kelvin-Helmholtz (KH) instability) is often expected to play an important role. Previous simulation and theory studies suggested that Jupiter's low-latitude dawn side flank region is KH unstable due to the large sheared flow between the fast tailward solar wind and magnetospheric sunward corotational flow. The onset of the KH instability can strongly modify the magnetopause boundary layer, which is consistent with the identification of 194 boundary crossings during Juno's first 14 orbits. We applied four different boundary normal analysis methods to illustrate that there is always a wide range of local normal directions, suggesting Jupiter's dawn-side flank region is often highly perturbed. The distribution of local normal directions is insensitive to the upstream solar wind dynamic pressure, Juno's inward/outward boundary crossing direction, and the location along the z direction of the boundary crossing. We also used a 2-D magnetohydrodynamic simulation to demonstrate that such a wide distribution can be formed by the KH instability even at the beginning of the nonlinear stage.
机译:太阳风和巨人之间的互动不但(例如,木星和土星不但)是至关重要的磁性层的物理、粘性交互(可能是由于Kelvin-Helmholtz (KH)通常是不稳定)将发挥重要作用。模拟和理论研究建议木星的低纬度黎明侧翼地区由于大型剪切流之间KH不稳定快速tailward太阳风和磁性层的朝着太阳corotational流。不稳定可以强烈修改磁层边界层,这是一致的194边界过境点的识别朱诺的第一个14的轨道。边界正常的分析方法来说明总是有各种当地正常方向,表明木星dawn-side旁边地区往往是高度不安。当地正常的方向分布对上游太阳风动态压力,朱诺的内/外边界跨越方向,沿z方向的位置的边界跨越。磁流体动力模拟演示这样就可以形成广泛分布KH不稳定甚至开始时非线性阶段。

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