论文标题
冠状质量弹出鞘区域的特性,有或没有立体观测值附近的原位观察结果。
Properties of the Sheath Regions of Coronal Mass Ejections with or without Shocks from STEREO in situ Observations near 1 AU
论文作者
论文摘要
我们研究了2007 - 2016年在Twin Stereo航天器测量的188个冠状质量弹出(CME),以研究ME上护套的平均物理参数的CME鞘和磁性喷射(ME)的通用特征。我们将MES分为三类,重点是ME是驱动震动和鞘,还是仅在1 AU附近的鞘或两种鞘。我们还通过自动化算法和视觉检查来重新评估初始分类。我们观察到,即使对于大于500 km/s的前缘速度,在4个ME中,有1个也不会在1 au附近引起冲击。在高磁性太阳风中,驱动冲击和护套的MES是最快的,并且在低磁性太阳能风中最慢的MES传播。我们的统计和超级时期分析表明,在冲击后,与没有冲击的护套相比,在鞘内区域,所有物理参数的增强都更高。但是,对于类似的驾驶ME,鞘内的差异在统计学上的显着意义降低。我们还发现,ME驱动的鞘的径向厚度显然与驾驶员的速度轮廓和相关的马赫数没有明显的线性相关性。
We examine 188 coronal mass ejections (CMEs) measured by the twin STEREO spacecraft during 2007-2016 to investigate the generic features of the CME sheath and the magnetic ejecta (ME) and dependencies of average physical parameters of the sheath on the ME. We classify the MEs into three categories, focusing on whether a ME drives both a shock and sheath, or only a sheath, or neither, near 1 AU. We also reevaluate our initial classification through an automated algorithm and visual inspection. We observe that even for leading edge speeds greater than 500 km/s, 1 out of 4 MEs do not drive shocks near 1 AU. MEs driving both shocks and sheaths are the fastest and propagate in high magnetosonic solar wind, whereas MEs driving only sheaths are the slowest and propagate in low magnetosonic solar wind. Our statistical and superposed epoch analyses indicate that all physical parameters are more enhanced in the sheath regions following shocks than in sheaths without shocks. However, differences within sheaths become statistically less significant for similar driving MEs. We also find that the radial thickness of ME-driven sheaths apparently has no clear linear correlation with the speed profile and associated Mach numbers of the driver.