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The flow of interstellar dust through the solar system: the role of dust charging

机译:穿过太阳系的星际灰尘:灰尘充电的作用

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Interstellar dust can enter the solar system through the relative motion of the Sun with respect to the Local Interstellar Cloud. The trajectories of the dust through the solar system are not only influenced by gravitation and solar radiation pressure forces, but also by the Lorentz forces due to the interaction of the interplanetary magnetic field with the charged dust particles. The interplanetary magnetic field changes on two major time scales: 25 days (solar rotation frequency) and 22 years (solar cycle). The short-term variability averages out for regions that are not too close (>~2 AU) to the Sun. This interplanetary magnetic field variability causes a time-variability in the interstellar dust densities, that is correlated to the solar cycle. In this work we characterize the flow of interstellar dust through the solar system using simulations of the dust trajectories. We start from the simple case without Lorentz forces, and expand to the full simulation. We pay attention to the different ways of modeling the interplanetary magnetic field, and discuss the influence of the dust parameters on the resulting flow patterns. We also discuss the possibilities of using this modeling for prediction of dust fluxes for different space missions or planets, and we pay attention to where simplified models are justified, and where or when a full simulation, including all forces is necessary. One of the aims of this work is to understand measurements of spacecraft like Ulysses, Cassini and Stardust.
机译:星际灰尘可以通过阳光的相对运动与当地星际云相对运动进入太阳系。通过太阳系的灰尘的轨迹不仅受到引力和太阳辐射压力的影响,而且由于穿插磁场与带电粉尘颗粒的相互作用,因此通过洛伦兹力。行星际磁场在两个主要时间尺度上变化:25天(太阳旋转频率)和22年(太阳循环)。短期变异性平均为不太近(>〜2 AU)到太阳的区域。这种行星际磁场变异性导致星际尘密密度的时间可变性,与太阳循环相关。在这项工作中,我们使用灰尘轨迹的模拟来表征穿过太阳系的星际灰尘的流动。我们从没有洛伦兹力的简单案例开始,并扩展到完整的模拟。我们注意模型截然磁场的不同方式,并讨论粉尘参数对所得流动模式的影响。我们还讨论了使用该建模用于预测不同空间任务或行星的灰尘通量的可能性,并且我们注意简化模型是合理的,在哪里或在全部模拟中或当需要全部模拟时。这项工作的一个目标是了解尤利西斯,卡西尼和星尘等航天器的测量。

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