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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Influence of negatively charged plume grains on the structure of Enceladus’ Alfven wings: Hybrid simulations versus Cassini Magnetometer data
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Influence of negatively charged plume grains on the structure of Enceladus’ Alfven wings: Hybrid simulations versus Cassini Magnetometer data

机译:带负电荷的羽流颗粒的影响恩克拉多斯的阿尔芬翅膀:混合结构模拟与卡西尼号磁强计的数据

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摘要

We apply the hybrid simulation code AIKEF (adaptive ion kinetic electron fluid) to the interaction between Enceladus’ plume and Saturn’s magnetospheric plasma. For the first time, the influence of the electron‐absorbing dust grains in the plume on the plasma structures and magnetic field perturbation, the Alfven wing, is taken into account within the framework of a global simulation. Our work continues the analytical calculations by Simon et al. (2011), who showed that electron absorption within the plume leads to a negative sign of the Hall conductivity. The resulting twist of the magnetic field, referred to as the Anti‐Hall effect, has been observed during all targeted Enceladus flybys between 2005 and 2010. We show that (1) applying a plume model that considers both, the neutral gas and the dust allow us to quantitatively explain Cassini Magnetometer (MAG) data, (2) dust enhances the anti‐Saturnward deflection of the ions, causing asymmetries which are evident in the MAG data, and (3) the ions in the plume are slowed down below 1 km s~(-1); and we compare our results to MAG data in order to systematically analyze variations in the plume activity and orientation for selected pairs of similar flybys: (E5, E6), (E7, E9) and (E8, E11).
机译:我们应用AIKEF混合仿真代码(自适应离子动能电子流体)恩克拉多斯的羽流之间的相互作用和土星磁性层的等离子体。影响电子的吸收尘埃颗粒在羽流等离子体结构和磁场扰动,阿尔芬翅膀考虑的框架内全球模拟。分析计算由西蒙et al。(2011),表明,电子吸收在谁羽通向大厅的一个负号导电性。场,称为反高霍尔效应被观察到在土卫二的目标2005年和2010年之间的飞越。应用柱模型,认为这两种物质,中性的气体和尘埃让我们定量解释卡西尼磁力仪(MAG)数据,(2)粉尘增强了反Saturnward离子的偏转,导致不对称在杂志的数据,很明显,(3)离子羽减慢如下1公里(s ~ (1);我们比较我们的结果,为了杂志数据系统地分析柱的变化活动和方向选择成对的类似的飞越:(E5, E6), (E7 E9)和(E8 E11)。

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