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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Response of the inner magnetosphere and the plasma sheet to a sudden impulse
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Response of the inner magnetosphere and the plasma sheet to a sudden impulse

机译:响应内部磁场和等离子体板突然冲动

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The passage of an interplanetary shock caused a sudden compression of the magnetosphere between 0900 UT and 0915 UT on 24 August 2005. An estimate of the shock normal from solar wind data obtained by Geotail upstream of the bow shock indicates symmetric compression with respect to the noon-midnight meridian. Compression-related disturbances of the magnetic and electric field and plasma motion were observed by Double Star Program (DSP) Tan Ce 1 (TC1) and Tan Ce 2 (TC2) in the inner magnetosphere and by the Cluster spacecraft in the dawnside plasma sheet. DSP/TC1 and TC2 observations suggest that the disturbances in the inner magnetosphere are propagating from the dayside magnetopause. Cluster S/C 4 observations indicate that the front normal of the disturbances in the dawnside plasma sheet is ~ 180° at 0902:50 UT and = 107° at 0904:34 UT, where is the longitude in GSM coordinates, if we assume that the measured electric field is on the front plane and the normal lies on the X–Y plane. The timing analysis applied to magnetic field data from the four Cluster spacecraft independently gives a front normal, which is calculated to be = 131° at about 0904:20 UT. Shock-associated magnetic and electric field disturbances propagating from both the dayside and flank magnetopauses are detected in the plasma sheet; the latter makes the dominant contribution. Substorms are, however, not triggered at the passage of the disturbances.
机译:通过一个星际冲击造成的突然之间的磁气圈压缩2005年8月24日0900 UT、0915 UT。估计太阳风冲击正常的数据通过Geotail上游的弓形激波表示对称压缩与尊重noon-midnight子午线。磁场和电场的干扰和等离子体运动被双星观察程序(DSP)谭Ce 1 (TC1)和棕褐色Ce 2 (TC2)在磁层内部和集群宇宙飞船在dawnside等离子板。和TC2观察表明,内部磁场的干扰传播的光面的磁层。观测表明,集群S / C 4正常的扰动dawnside前面等离子体单~ 180°0902:50 UT和= 107°在0904:34 UT, GSM的经度坐标,如果我们假设测量电场在飞机和前面正常躺在x - y平面。从这四个应用于磁场数据集群航天器独立了正常,这是计算= 131°0904:20 UT。从两个电场扰动传播检测到的光面和侧面磁层在等离子体片;主要的贡献。不触发通道的干扰。

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