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首页> 外文期刊>Annales Geophysicae >Dual-spacecraft reconstruction of a three-dimensional magnetic flux rope at the Earth's magnetopause
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Dual-spacecraft reconstruction of a three-dimensional magnetic flux rope at the Earth's magnetopause

机译:地球磁层顶的三维磁通绳的双飞船重建

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摘要

We present the first results of a data analysis method, developed by Sonnerup and Hasegawa (2011), for reconstructing three-dimensional (3-D), magnetohydrostatic structures from data taken as two closely spaced satellites traverse the structures. The method is applied to a magnetic flux transfer event (FTE), which was encountered on 27 June 2007 by at least three (TH-C, TH-D, and TH-E) of the five THEMIS probes near the subsolar magnetopause. The FTE was sandwiched between two oppositely directed reconnection jets under a southward interplanetary magnetic field condition, consistent with its generation by multiple X-line reconnection. The recovered 3-D field indicates that a magnetic flux rope with a diameter of similar to 3000 km was embedded in the magnetopause. The FTE flux rope had a significant 3-D structure, because the 3-D field reconstructed from the data from TH-C and TH-D (separated by similar to 390 km) better predicts magnetic field variations actually measured along the TH-E path than does the 2-D Grad-Shafranov reconstruction using the data from TH-C (which was closer to TH-E than TH-D and was at similar to 1250 km from TH-E). Such a 3D nature suggests that the field lines reconnected at the two X-lines on both sides of the flux rope are entangled in a complicated way through their interaction with each other. The generation process of the observed 3-D flux rope is discussed on the basis of the reconstruction results and the pitch-angle distribution of electrons observed in and around the FTE.
机译:我们介绍了Sonnerup和Hasegawa(2011)开发的数据分析方法的第一个结果,该方法用于从两个紧密间隔的卫星经过的数据中重建三维(3-D)静磁静水结构。该方法适用于磁通量传递事件(FTE),该事件在2007年6月27日被近地下磁层顶附近的五个THEMIS探针中的至少三个(TH-C,TH-D和TH-E)遇到。 FTE被夹在两个朝南的行星际磁场条件下的相反方向的重新连接射流之间,这与多条X线重新连接产生的FTE一致。恢复的3-D场表明,直径接近3000 km的磁通绳嵌入了磁层顶。 FTE磁通绳具有显着的3-D结构,因为从TH-C和TH-D数据重建的3-D场(相距约390 km)可以更好地预测沿TH-E实际测量的磁场变化与使用TH-C的数据进行的二维Grad-Shafranov重建相比,它的路径要小得多(后者比TH-D更接近TH-E,并且距TH-E约1250公里)。这种3D性质表明,在磁通绳两侧的两条X线处重新连接的场线通过它们彼此的相互作用以复杂的方式纠缠在一起。根据重建结果以及在FTE内和周围观察到的电子的俯仰角分布,讨论了所观察到的3-D磁通绳的产生过程。

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