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Mirror Instability Driven by Pickup Ions in the Outer Heliosheath

机译:镜子不稳定性由外部Heliosheath中的拾取离子驱动

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The stability of the pickup ions in the outer heliosheath is a vital factor in the generation of the energetic neutral atom (ENA) ribbon observed by the Interstellar Boundary EXplorer according to the secondary ENA mechanism. Most previous studies of the pickup ion stability assumed simple, idealized velocity distributions of the pickup ions and focused on the parallel-propagating modes only. This paper takes a more realistic multicomponent pickup ion velocity distribution given by the global modeling of neutral atoms in the heliosphere and investigates the role of the oblique mirror waves, in addition to the parallel modes. Both linear kinetic instability analysis and hybrid simulations are performed. In contrast to a recent investigation using the same distribution that demonstrated the growth of parallel waves but reported an insignificant contribution of oblique modes, our study reveals substantial growth of the oblique mirror instability. The oblique mirror modes and the parallel/quasi-parallel ion cyclotron waves grow simultaneously with different growth rates. The pickup ion scattering by two types of excited waves together is more pronounced than by either type of wave alone. More importantly, our two-dimensional hybrid simulation results demonstrate that the development of the mirror instability not only produces its own pickup ion scattering, but also leads to the growth of extra ion cyclotron waves (in a quasi-linear manner), which further enhances the pickup ion scattering. The results suggest an important role of the mirror modes that should not be ignored in the stability study of the outer heliosheath pickup ions.
机译:外部HeliOsheath中的拾取离子的稳定性是根据次级ENA机构的初步Zeproverer观察到的能量中性原子(ENA)带产生的重要因素。最先前的拾取离子稳定性研究假定拾取离子的简单,理想化的速度分布,并仅聚焦在并联传播模式上。本文采用了氦层中的中性原子的全球建模,除了并行模式之外还采用全球中性原子的全球建模提供了更现实的多组分拾取离子速度分布。执行线性动力学不稳定分析和混合模拟。与最近使用相同的分布的调查相比,据证明了平行波的生长但报告了倾斜模式的微不足道的贡献,我们的研究揭示了倾斜镜不稳定的大量增长。倾斜镜像和并联/准直的离子回旋波同时产生不同的生长速率。通过两种激发波的拾取离子散射比单独的任一浪潮更加明显。更重要的是,我们的二维混合模拟结果表明,镜子不稳定性的发展不仅产生自己的拾取离子散射,而且导致额外的离子回旋波(以准线性方式)的生长,进一步增强拾取离子散射。结果表明,在外部Heliosheath拾取离子的稳定性研究中不应忽略的镜像模式的重要作用。

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