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Electron Physics in 3-D Two-Fluid 10-Moment Modeling of Ganymede's Magnetosphere

机译:金物理在3-D双流体10立刻建模的Ganymede磁影数

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We studied the role of electron physics in 3-D two-fluid 10-moment simulation of Ganymede's magnetosphere. The model captures nonideal physics like the Hall effect, electron inertia, and anisotropic,nongyrotropic pressure effects. A series of analyses were carried out: (1) The resulting magnetic field topology and electron and ion convection patterns were investigated. The magnetic fields were shown to agree reasonably well with in situ measurements by the Galileo satellite. (2) The physics of collisionless magnetic reconnection were carefully examined in terms of the current sheet formation and decomposition of generalized Ohm's law. The importance of pressure anisotropy and nongyrotropy in supporting the reconnection electric field is confirmed. (3) We compared surface "brightness" morphology, represented by surface electron and ion pressure contours, with oxygen emission observed by the Hubble Space Telescope. The correlation between the observed emission morphology and spatial variability in electron/ion pressure was demonstrated. Potential extension to multi-ion species in the context of Ganymede and other magnetospheric systems is also discussed.
机译:我们研究了电子物理的作用,在甘幕磁层的三维双流体10立体模拟中的作用。该模型捕获了霍尔效应,电子惯性和各向异性,整位渗透压压力效应的非积极物理学。进行了一系列分析:(1)研究了所得到的磁场拓扑和电子和离子对流模式。显示磁场与伽利略卫星的原位测量相加。 (2)根据推广欧姆法的当前板形成和分解,仔细检查了碰撞磁性重新连接的物理学。确认了压力各向异性和非对抗的重要性。 (3)我们比较了表面电子和离子压力轮廓所代表的表面“亮度”形态,由哈勃空间望远镜观察到氧气发射。证实了电子/离子压力中观察到的发射形态和空间变异性之间的相关性。还讨论了在Ganymede和其他磁体系统的背景下对多离子物种的潜在延伸。

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