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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Interplanetary coronal mass ejection and ambient interplanetary magnetic field correlations during the Sun-Earth connection events of October–November 2003
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Interplanetary coronal mass ejection and ambient interplanetary magnetic field correlations during the Sun-Earth connection events of October–November 2003

机译:星际日冕物质抛射和环境行星际磁场的相关性来观察太阳-地球连接的事件2003年的10月

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Magnetic field observations made during 28 October to 1 November 2003, which included two fast interplanetary coronal mass ejections (ICMEs), allow a study of correlation lengths of magnetic field parameters for two types of interplanetary (IP) structures: ICMEs and ambient solar wind. Further, they permit the extension of such investigations to the magnetosheath and to a distance along the Sun-Earth line (X) of about 400 R E . Data acquired by three spacecraft are examined: ACE, in orbit around the L1 point; Geotail, traveling eastward in the near-Earth solar wind (at R ~ 30 R E ); and Wind, nominally in the distant geomagnetic tail (R ~ ?160 R E ) but making repeated excursions into the magnetosheath/solar wind due to the flapping of the tail. Analyses are presented in both time and frequency domains. We find significant differences in the cross-correlation/coherence properties of the ambient interplanetary magnetic field (IMF) and ICME parameters. For the ambient IMF, we find high coherence to be confined to low frequencies, consistent with other studies. In contrast, ICME magnetic field parameters remain generally coherent up to much higher frequencies. Scale lengths of ICME magnetic field parameters are in excess of 400 R E . High speeds of ~1700 km s?1 are inferred from the plot of phase difference versus frequency, consistent with that obtained from plasma instruments. To strengthen these results and to extend them to include dependence on the distance perpendicular to the Sun-Earth line (Y), we examine a 28-day interval in year 2001 characterized by a sequence of 10 ICMEs and containing roughly equal ambient solar wind and ICME time intervals. ACE-Wind X and Y separations were ~220 and ~250 R E , respectively. We find good coherence/correlation alternating with poor values. In particular, we find that in general ICME coherence/correlation lengths along Y are larger by a factor of 3–5 than those quoted in the literature for ambient solar wind parameters. Our findings are good news for the space weather effort, which depends crucially on predicting the arrival of large events, since they make possible the placement of upstream monitors to give a longer lead time than at L1.
机译:磁场在10月28日观察2003年11月1日,包括两个快星际日冕物质抛射(icm),允许相关长度的磁性的研究场参数两种类型的星际(IP)结构:icm和周围的太阳风。此外,他们允许的扩展磁鞘和调查距离来观察太阳-地球的行(X)400 R E。检查:王牌,在绕L1点;近地Geotail,向东旅行太阳风(~ 30 R E);在遥远的地磁尾巴(160 R E R ~ ?)但多次去过磁鞘/太阳风的拍打尾。频率域。互相关/一致性的差异周围的行星际磁场的属性字段(货币基金组织)和ICME参数。国际货币基金组织(IMF),我们发现高相干性是局限于低频率,与其他的研究一致。相反,ICME磁场参数仍然存在一般的更高的频率。ICME磁场参数的长度超过400 R E。公里的年代吗?区别与频率、一致从等离子体的乐器。这些结果并包括扩展它们垂直的距离的依赖Sun-Earth线(Y),我们检查28天的时间间隔2001年以一系列10icm和包含大致相等的环境太阳能风和ICME时间间隔。分离~ 220 ~ 250 R E,分别。交替较差值。发现一般ICME相干/相关性长度沿Y是较大的3 - 5倍环境比引用的文献太阳风参数。空间天气工作,视情况而定至关重要的是在预测的到来事件,因为他们的位置成为可能上游监视器给更长的交货时间比在L1。

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