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Cluster observations of O+ escape in the magnetotail due to shock compression effects during the initial phase of the magnetic storm on 17 August 2001

机译:集群的观察O +逃脱磁尾由于冲击压缩效果在初始阶段的磁暴2001年8月17日

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We study the O+ outflow into the magnetotail during the initial phase of the 17 August 2001 magnetic storm. Solar wind and magnetospheric data are used from instruments onboard ACE, WIND, and Cluster spacecraft. The interplanetary shock arrival at Earth caused a large compression of the magnetosphere. During this event, the Cluster spacecraft were crossing the plasma sheet boundary layer of the magnetotail. Thus this case study constitutes a unique opportunity to observe the magnetotail response to a shock driven storm with multiple S/C data. We observed a field aligned oxygen (O+) outflow in the plasma sheet boundary layer and a bidirectional O+ flux in the central plasma sheet. Using the Cluster multiple spacecraft data, we derived the O+ gradient and the escape rate into the magnetotail during the initial phase of the magnetic storm. We found an escape rate of 4.0 × 1024 O+ ions s?1 in the plasma sheet boundary layer of the magnetotail, which is about 20 times the O+ inflow into the ring current during an intense magnetic storm.
机译:我们研究O +流出到磁尾在初始阶段的2001年8月17日磁性风暴。使用数据从仪器上的王牌,风,和集群航天器。抵达地球很大压缩引起的磁气圈。宇宙飞船穿过等离子体片磁尾的边界层。研究构成了一个独特的机会去观察磁尾应对冲击驱动的风暴与多个S / C数据。对齐的氧等离子体片(O +)流出边界层和双向O +通量中央等离子板。航天器的数据,我们O +梯度和派生而来逃跑率在磁尾初始阶段的磁暴。逃逸速度为4.0×1024 O +离子?磁尾等离子体片边界层,这是O +流入到20倍呢环电流在一次强烈的磁暴。

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