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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Asymmetry in the bipolar signatures of flux transfer events
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Asymmetry in the bipolar signatures of flux transfer events

机译:不对称双签名的通量转会事件

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Several conceptual models have been proposed for the formation of flux transfer events (FTEs), including models based on reconnection at a single reconnection line (X line) and at multiple X lines. Two-dimensional magnetohydrodynamic models have previously been used to simulate both scenarios and have found a tendency for FTEs generated by single X line reconnection to exhibit an asymmetry in the bipolar BN signature that is the major in situ signature of FTE structures, with the leading peak being substantially smaller than the trailing peak. On the other hand, simulated FTEs generated by multiple X line reconnection led to more symmetric signatures. We present a comparison of these simulation results with observations made at the Earth's magnetopause by the Cluster spacecraft, using a data set of 213 FTEs which were observed by all four spacecraft in 2002/2003 at the high-latitude magnetopause near local noon and at low latitudes on the flanks, and 36 FTEs which were observed by one or more Cluster spacecraft near the subsolar point in 2007 and 2008. A tendency is found for the BN signatures to be asymmetric but with the leading peak larger in amplitude than the trailing peak, opposite to the prediction made by the 2-D single X line simulations. This tendency is weaker in the subsolar FTEs. Therefore, the observations are not consistent with 2-D MHD simulations of single X line reconnection. The signatures observed near the subsolar point are more consistent with those predicted by 2-D simulations of multiple X line reconnection, although the multiple X line simulation studies did not report any net asymmetry. We propose that the observed asymmetry can be explained by a compression of magnetic flux ahead of the propagating FTE structure and a rarefaction behind it. The weaker tendency nearer the subsolar point is consistent with a weaker compression and rarefaction due to lower FTE velocities.
机译:已经提出了几个概念模型通量传输事件(fte)的形成,包括基于重新连接在一个模型单重联(X线)和在多个行X线。模型曾被用来模拟两种场景和发现,招聘的趋势由单一的X线重新连接表现出一种不对称的双相BN签名这是主要的FTE原位签名结构,前峰大大小于峰值。另一方面,模拟生成的招聘多个X线重新连接导致更多对称的签名。这些仿真结果与观察地球的磁层集群航天器,使用一个数据集的213招聘被观察到的所有四个飞船在2002/2003吗在高纬度地区磁层附近当地中午在低纬度地区侧翼,36,招聘被观察到一个或多个集群在2007年和飞船靠近赤道的点2008. 不对称但大前峰在振幅比拖尾峰,相反所做的预测二维单一X线模拟。现世的招聘。不符合二维磁流体动力模拟单X线重新连接。赤道的点更一致预测的二维模拟多个X线重新连接,尽管多个X线模拟研究没有报告任何净不对称。都可以解释为一种磁压缩通量的传播和FTE结构稀疏。赤道的点与一个较弱的是一致的压缩和稀疏FTE由于低速度。

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