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On the formation of Ganymede's surface brightness asymmetries: Kinetic simulations of Ganymede's magnetosphere

机译:关于木卫三表面亮度不对称的形成:木卫三磁层的动力学模拟

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Ganymede possesses strong surface brightness asymmetries both between its polar cap and equatorial regions and between its leading and trailing hemispheres. Here we test the hypothesis that these asymmetries are due to differential Jovian plasma and energetic particle precipitation to the surface with the combination of a hybrid plasma model (kinetic ions and fluid electrons) and a particle tracing model. We describe the hybrid model, the first of its kind applied to Ganymede, and compare the results to both Galileo observations and previous MHD and MHD-EPIC models of Ganymede. We calculate spatially resolved precipitating Jovian ion fluxes to the surface of Ganymede for energies 1< E < 10(4) keV and find (1) precipitating fluxes peak near 100 keV and (2) excellent correlation between the precipitating flux and Ganymede's surface brightness variations. Thus, we conclude that precipitating energetic particle fluxes are the primary driver for altering the surface brightness of Ganymede.
机译:木卫三在其极顶和赤道区域之间以及在其前半球与后半球之间都具有很强的表面亮度不对称性。在这里,我们通过混合等离子体模型(运动离子和流体电子)和颗粒追踪模型的组合,测试了这些不对称性是由于不规则的Jovian等离子体和高能粒子沉淀到表面而导致的。我们描述了混合模型,这是第一个应用于木卫三的模型,并将结果与​​伽利略观测结果以及木卫三以前的MHD和MHD-EPIC模型进行了比较。我们计算了能量1

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