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EL - a possible indicator to monitor the magnetic field stretching at global scale during substorm expansive phase: Statistical study

机译:EL - 一种可能的指标,用于在膨胀期期间在全球范围内监测磁场的指示灯:统计研究

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摘要

An interesting open question of magnetospheric physics is the understanding of the dynamics of the magnetotail. The question of the field stretching is even more challenging during substorm periods, mainly because of the short time scales involved during such explosive events. In this study, we asses the ability of global scale proton auroral imaging to provide information on the tail stretching during active periods. We base our investigation on more than 250 isolated substorms observed by IMAGE-SI12 between 2000 and 2002. Applying the algorithm proposed by Donovan et al. (2003) for ground based observations to IMAGE-SI12 data, we determine the Equatorial Limit (EL) of the oval and propose to use it as an indicator of the tail stretching. Simultaneous comparison with GOES-8 allows us to estimate how strong is the relationship between the EL position deduced from SI12 and the magnetic field stretching. The EL indicator is shown to be consistent with previous studies (Sergeev and Gvozdevsky (1995) and Blockx et al. (2005)) and is found to be located in average ~1 degree equatorward of the limit deduced from DMSP measurements. The time evolution of the EL magnetic latitude is also presented for different local times relative to the onset position. This evolution of the EL index presents an asymmetric shape following the time of onset, suggesting a more important stretching of the tail duskward of the onset position. This asymmetric stretching is consistent with GOES-8 in situ measurements.
机译:磁体物理学的一个有趣的开放问题是了解磁轨的动态。场伸展的问题在代耳期间甚至更具挑战性,主要是因为在这种爆炸事件中涉及的短时间尺度。在这项研究中,我们判断全球规模质子焦点成像的能力,以在活动期间提供关于尾部拉伸的信息。我们在2000年至2002年间图像-SI12观察到的250多种孤立的孤立代表性的研究。应用Donovan等人提出的算法。 (2003)对于基于地面的图像-SI12数据的观察,我们确定椭圆形的赤道极限(EL),并建议将其用作尾部拉伸的指示器。与GOY-8的同时比较允许我们估计从SI12和磁场拉伸推导的EL位置之间的关系的强度。 EL指示器显示与先前的研究一致(Sergeev和Gvozdevsky(1995)和Blockx等人)。(2005))并被发现位于从DMSP测量中推断的平均〜1度赤道。还可以针对起始位置呈现EL磁纬度的时间进化。 EL指数的这种进化呈现出在发作时间之后的不对称形状,暗示了起始位置的尾部哑铃的更重要的拉伸。这种不对称拉伸与原位测量的GOS-8一致。

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