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Multi-point observations of the Hall electromagnetic field and secondary island formation during magnetic reconnection

机译:多点观测的大厅电磁场和二级岛磁重联过程中出现的

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A key feature of collisionless magnetic reconnection is the formation of Hall magnetic and electric field structure in the vicinity of the diffusion region. Here we present multi-point Cluster observations of a reconnection event in the near-Earth magnetotail where the diffusion region was nested by the Cluster spacecraft; we compare observations made simultaneously by different spacecraft on opposite sides of the magnetotail current sheet. This allows the spatial structure of both the electric and magnetic field to be probed. It is found that, close to the diffusion region, the magnetic field displays a symmetric quadrupole structure. The Hall electric field is symmetric, observed to be inwardly directed on both sides of the current sheet. It is large (~40 mV m?1) on the earthward side of the diffusion region, but substantially weaker on the tailward side, suggesting a reduced reconnection rate reflected by a similar reduction in E y . A small-scale magnetic flux rope was observed in conjunction with these observations. This flux rope, observed very close to the reconnection site and entrained in the plasma flow, may correspond to what have been termed secondary islands in computer simulations. The core magnetic field inside the flux rope is enhanced by a factor of 3, even though the lobe guide field is negligible. Observations of the electric field inside the magnetic island show extremely strong (~100 mV m~(-1)) fields which may play a significant role in the particle dynamics during reconnection.
机译:的一个关键特性无碰撞的磁性重新连接是霍尔磁的形成和附近的电场结构该地区扩散。集群重新连接事件的观察的近地磁尾扩散地区是由集群航天器嵌套;同时对比观察不同的航天器的两侧当前磁尾单。空间的电气和结构磁场探测。靠近扩散区域,磁场显示一个对称四极结构。霍尔电场是对称的,观察到内心导演两边的电流床单一边的扩散区域,但实质上tailward方面较弱,表明减少重联率反映在一个类似的减少E y。绳子是观察与这些观察。重新连接站点和携入的等离子体流,可能对应于什么称为计算机模拟的二次岛屿。内部的核心磁场通量绳提高了3倍,即使叶指导字段是可以忽略不计。电场内部磁岛秀极强的(~ 100 mV m ~(- 1))领域在粒子可能扮演重要角色在重新连接动力学。

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