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Ion trapping by dust grains: Simulation applications to the Enceladus plume

机译:灰尘谷物的离子俘获:对Enceladus羽流的仿真应用

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摘要

Using a particle-in-cell electrostatic simulation, we examine the conditions that allow low-energy ions, like those produced in the Enceladus plume, to be attracted and trapped within the sheaths of negatively charged dust grains. The conventional wisdom is that all new ions produced in the Enceladus plume are free to get picked up (i.e., accelerated by the local E field to then undergo vB acceleration). However, we suggest herein that the presence of submicron-charged dust in the plume impedes this pickup process since the local grain electric field greatly exceeds the corotation E fields. The simulations demonstrate that cold ions will tend to accelerate toward the negatively charged grains and become part of the ion plasma sheath. These trapped ions will move with the grains, exiting the plume region at the dust speed. We suggest that Cassini's Langmuir probe is measuring the entire ion population (free and trapped ions), while the Cassini magnetometer detects the magnetic perturbations associated with pickup currents from the smaller population of free ions, with this distinction possibly reconciling the ongoing debate in the literature on the ion density in the plume.
机译:使用粒子内静电模拟,我们检查允许低能量离子的条件,如在Centeladus羽流中产生的那些,以吸引和捕获在带负电尘颗粒的护套内。传统的智慧是,在Enceladus羽流中产生的所有新离子都可以自由地拾取(即,由本地E场加速,然后经过VB加速度)。然而,我们建议在羽流中的亚微米带电灰尘的存在阻碍了这种拾取过程,因为局部谷物电场大大超过了COROTOATE E场。模拟表明冷离子倾向于加速带负电的晶粒并成为离子等离子体护套的一部分。这些捕集的离子将与晶粒一起移动,以灰尘速度离开羽流区域。我们建议Cassini的Langmuir探针测量整个离子群(自由和捕获的离子),而Cassini磁力计检测与从较小的自由离子群体中与拾取电流相关的磁性扰动,这有可能调和文献中正在进行的辩论关于羽流中的离子密度。

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