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首页> 外文期刊>Geophysical Research Letters >Magnetosheath variations during the storm main phase on 20 November 2003: Evidence for solar wind density control of energy transfer to the magnetosphere
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Magnetosheath variations during the storm main phase on 20 November 2003: Evidence for solar wind density control of energy transfer to the magnetosphere

机译:2003年11月20日风暴主相期间的磁石场变化:控制向磁层的能量转移的太阳风密度控制的证据

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摘要

Energy transfer from the solar wind into the magnetosphere and ionosphere is controlled by the southward magnetic field in the magnetosheath which under normal high Mach number conditions is about four times the solar wind southward field. In a low Mach number regime, however, the magnetosheath compression is diminished by a low solar wind density when the magnetic field remains steady. When magnetic clouds with extremely strong magnetic field cause severe geomagnetic storms under such low Mach number conditions, the density control of the energy transfer is expected to be important in understanding ring current evolution. Here we show evidence for such a density effect using in-situ observation by the GOES and Cluster spacecraft in the magnetosheath during the main phase of the super storm on 20 November 2003. Results from a global magnetohydrodynamic (MHD) simulation with an embedded ring current model also support this density effect.
机译:从太阳风到磁层和电离层的能量传输受磁石场中的南磁场控制,在正常的高马赫数条件下,该磁场约为太阳风南磁场的四倍。但是,在低马赫数状态下,当磁场保持稳定时,低太阳风密度会降低磁石热压缩。当在如此低的马赫数条件下,具有极强磁场的磁云引起严重的地磁风暴时,预计能量转移的密度控制对于理解环流的发展至关重要。在这里,我们使用2003年11月20日超级风暴主要阶段的GOES和星团航天器在磁石荒场的原位观测来显示这种密度效应的证据。模型也支持这种密度效应。

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