论文标题

在磁性云的径向和纵向变化上:ACE,风,Artemis和Juno观测

On the Radial and Longitudinal Variation of a Magnetic Cloud: ACE, Wind, ARTEMIS and Juno Observations

论文作者

Davies, E. E., Forsyth, R. J., Good, S. W., Kilpua, E. K. J.

论文摘要

我们介绍了通过高级组成探索器(ACE),风以及月球与太阳(Artemis)任务的相互作用的加速,重新连接,湍流和电动力学的加速,重新连接,湍流和电动力学的观察,这些磁云由事件和巨型互动的时间历史(Artemis)构成,构成了事件的时间历史和近路(themis)B和Themis c SpaceCraft和SpaceCraft at au的距离。在整个事件中,航天器几乎接近径向对齐,纵向分离$ 3.6^{\ circ} $在朱诺和地球附近的航天器之间。磁云可能起源于2011年10月22日00:05 UT的细丝爆发,并于10月24日开始造成强烈的地磁风暴。已经使用最小方差分析和两个通量绳索拟合模型(Lundquist和Gold-Hoyle)分析了每个航天器对磁云的观察,以给出通量绳轴的方向。我们探讨了不同后缘边界对每种分析方法的结果的影响,并在近地地球飞船和Juno的磁通绳轴的方向之间找到明显的差异,而与分析方法无关。使用观测值和拟合参数计算轴向磁场强度和通量绳的径向宽度,并研究了它们与HeliePentric距离的关系。接近地上航天器和朱诺之间的结果差异不仅归因于径向分离,还归因于较小的纵向分离,这导致了航天器之间的原位观察结果差异很大。该案例研究表明,Juno Cruise数据是研究1 AU以上的磁云的新机会,并且需要在将来的径向对齐研究中谨慎。

We present observations of the same magnetic cloud made near Earth by the Advance Composition Explorer (ACE), Wind, and the Acceleration, Reconnection, Turbulence and Electrodynamics of the Moon's Interaction with the Sun (ARTEMIS) mission comprising the Time History of Events and Macroscale Interactions during Substorms (THEMIS) B and THEMIS C spacecraft, and later by Juno at a distance of 1.2 AU. The spacecraft were close to radial alignment throughout the event, with a longitudinal separation of $3.6^{\circ}$ between Juno and the spacecraft near Earth. The magnetic cloud likely originated from a filament eruption on 22 October 2011 at 00:05 UT, and caused a strong geomagnetic storm at Earth commencing on 24 October. Observations of the magnetic cloud at each spacecraft have been analysed using Minimum Variance Analysis and two flux rope fitting models, Lundquist and Gold-Hoyle, to give the orientation of the flux rope axis. We explore the effect different trailing edge boundaries have on the results of each analysis method, and find a clear difference between the orientations of the flux rope axis at the near-Earth spacecraft and Juno, independent of the analysis method. The axial magnetic field strength and the radial width of the flux rope are calculated using both observations and fitting parameters and their relationship with heliocentric distance is investigated. Differences in results between the near-Earth spacecraft and Juno are attributed not only to the radial separation, but to the small longitudinal separation which resulted in a surprisingly large difference in the in situ observations between the spacecraft. This case study demonstrates the utility of Juno cruise data as a new opportunity to study magnetic clouds beyond 1 AU, and the need for caution in future radial alignment studies.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源