论文标题
如航天器结合所揭示的CME径向扩展的局部和全球度量之间的不一致
Inconsistencies Between Local and Global Measures of CME Radial Expansion as Revealed by Spacecraft Conjunctions
论文作者
论文摘要
冠状质量弹出(CME)的径向膨胀是从远程观测中出现的。从径向距离的特性变化中;从局部原位等离子体测量值显示了整个磁性喷射(ME)的速度曲线下降。但是,对于本地测量与扩展的全球测量相比,知之甚少。在这里,我们介绍了对在径向结合中通过两个航天器在内层中测量的42个CME的分析结果。磁场随距离减小提供了衡量其全局膨胀的度量。接近1 AU,其大量速度的下降提供了局部扩张的度量。我们发现,这两种措施彼此之间的关系几乎没有关系。我们还研究了CME扩展特性与CME特性之间的关系。我们发现膨胀取决于ME内部的初始磁场强度,但并非显着取决于在1 AU附近测量的ME内部的磁场。这是一个间接的证据,表明最内向的Heliosphere中的CME膨胀是由ME内部的高磁压驱动的,而到MES达到1 Au时,由于太阳风力压力的降低,它们正在扩展,它们正在扩展。我们还确定了ME切向切向磁场成分的演变具有距离,与无力场构型的期望相比,揭示了明显的偏差,以及一些证据表明,ME的前半部分以比后半部分更快的速度扩展。
The radial expansion of coronal mass ejections (CMEs) is known to occur from remote observations; from the variation of their properties with radial distance; and from local in situ plasma measurements showing a decreasing speed profile throughout the magnetic ejecta (ME). However, little is known on how local measurements compare to global measurements of expansion. Here, we present results from the analysis of 42 CMEs measured in the inner heliosphere by two spacecraft in radial conjunction. The magnetic field decrease with distance provides a measure of their global expansion. Near 1 au, the decrease in their bulk speed provides a measure of their local expansion. We find that these two measures have little relation with each other. We also investigate the relation between characteristics of CME expansion and CME properties. We find that the expansion depends on the initial magnetic field strength inside the ME, but not significantly on the magnetic field inside the ME measured near 1 au. This is an indirect evidence that CME expansion in the innermost heliosphere is driven by the high magnetic pressure inside the ME, while by the time the MEs reach 1 au, they are expanding due to the decrease in the solar wind dynamic pressure with distance. We also determine the evolution of the ME tangential and normal magnetic field components with distance, revealing significant deviations as compared to the expectations from force-free field configurations as well as some evidence that the front half of MEs expand at a faster rate than the back half.