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Dynamic processes and kinetic structure of collisionless reconnection at the dayside magnetopause: comparison between GEOTAIL observations and computer simulations

机译:日间绝经的无碰撞重新连接的动力学过程和动力学结构:GEOTAIL观测结果与计算机模拟之间的比较

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摘要

In this paper we report new kinetic features of ions and electrons observed in the vicinity of the reconnection layer on 10 January 1997. This event has a three-dimensional magnetic field topological structure, which is much more complex than the previously suggested two-dimensional magnetic configuration. The ion distributions are non-gyrotropic and electrons show non-Maxwellian distribution functions. Acceleration of multiple ion beams, both parallel and perpendicular to the local magnetic field, have been observed. The perpendicular acceleration of the multiple ion beams can be explained by plasma mixing between the meandering ions accelerated around the ion diffusion region and the cold ions convected directly from the magnetosheath without passing through the X-line region. The parallel acceleration of the multiple ion beams can be understood by the fact that high-velocity ions ejected from the vicinity of the X-line mix with the plasma flowing directly across the boundary. We observed the kinetic effect of the separation of the electron and ion edges due to the time-of-flight effect. It is stressed that kinetic processes are the key to understanding these new observations that cannot be adequately explained by magnetohydrodynamic (MHD) models.Space plasma physics (magnetic reconnection; charged particle motion and acceleration) – Magnetospheric physics (magnetopause, cusp, and boundary layers)
机译:在本文中,我们报告了在1997年1月10日在重新连接层附近观察到的离子和电子的新动力学特征。该事件具有三维磁场拓扑结构,它比以前建议的二维磁场复杂得多。组态。离子分布是非旋涡性的,电子具有非麦克斯韦分布函数。已经观察到平行和垂直于局部磁场的多个离子束的加速。多个离子束的垂直加速度可以通过在离子扩散区域周围加速的曲折离子与不经过X线区域直接从磁热对流的冷离子之间的等离子体混合来解释。从X线附近射出的高速离子与直接流过边界的等离子体混合,可以理解多个离子束的平行加速度。由于飞行时间效应,我们观察到了电子和离子边缘分离的动力学效应。需要强调的是,动力学过程是理解这些新发现的关键,而这些现象不能被磁流体动力学(MHD)模型充分解释。空间等离子体物理学(磁重连;带电粒子运动和加速度)–磁层物理学(磁层顶,尖顶和边界层) )

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