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On the signatures of magnetic islands and multiple X-lines in the solar wind as observed by ARTEMIS and WIND

机译:通过ARTEMIS和WIND观察到太阳风中的磁岛和多条X线的信号

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摘要

We report the first observation consistent with a magnetic reconnection generated magnetic island at a solar wind current sheet that was observed on 10 June 2012 by the two ARTEMIS satellites and the upstream WIND satellite. The evidence consists of a core magnetic field within the island which is formed by enhanced Hall magnetic fields across a solar wind reconnection exhaust. The core field at ARTEMIS displays a local dip coincident with a peak plasma density enhancement and a locally slower exhaust speed which differentiates it from a regular solar wind exhaust crossing. Further indirect evidence of magnetic island formation is presented in the form of a tripolar Hall magnetic field, which is supported by an observed electron velocity shear, and plasma density depletion regions which are in general agreement with multiple reconnection X-line signatures at the same current sheet on the basis of predicted signatures of magnetic islands as generated by a kinetic reconnection simulation for solar wind-like conditions. The combined ARTEMIS and WIND observations of tripolar Hall magnetic fields across the same exhaust and Grad-Shrafranov reconstructions of the magnetic field suggest that an elongated magnetic island was encountered which displayed a 4R_E normal width and a 43R_E extent along the exhaust between two neighboring X-lines.
机译:我们报告了第一次观测,这与两个ARTEMIS卫星和上游WIND卫星在2012年6月10日观测到的太阳风电流表上的磁重连产生的磁岛相符。证据包括岛内的核心磁场,该磁场由跨太阳风重新连接排气的增强霍尔磁场形成。 ARTEMIS的核心场显示出局部倾斜,与峰值等离子体密度增强和局部较慢的排气速度相吻合,这使其与常规的太阳风排气道相区别。进一步以三极霍尔磁场的形式提供了磁岛形成的间接证据,该磁场由观察到的电子速度切变和等离子密度耗尽区域共同支持,这些区域通常与同一电流下的多个重连X线信号一致根据对太阳风状条件进行的动力学重新连接模拟生成的磁岛的预测特征而生成的这张图。跨相同排气的三极霍尔磁场的ARTEMIS和WIND观测结合以及磁场的Grad-Shrafranov重建表明,遇到了一个细长的磁岛,沿着两个相邻X-射线之间的排气显示了4R_E正常宽度和43R_E范围。线。

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