论文标题
早期帕克太阳能探针遇到的折返偏转
Switchback Deflections Beyond the Early Parker Solar Probe Encounters
论文作者
论文摘要
折返是太阳风中的Aflvénic波动,在磁场方向上表现出很大的旋转。帕克太阳能探测器(PSP)的前两个太阳能相遇的观察已经构成了许多描述的换回属性和发电机制的基础。但是,该早期数据可能无法代表典型的近似太阳风,这偏见了我们当前对这些现象的理解。一个定义的换回属性是磁性偏转方向。在第一次太阳能遭遇中,这主要是最长的折返方向的切向方向,此后已将其作为证据和可检验的几种折返生成方法进行了讨论。在这项研究中,我们在前八个PSP遇到期间重新检查了折返方向,以确认存在系统偏转方向的存在。我们首先识别超过磁场中阈值偏转的折返,并确认先前的发现它们是弧极的。与PSP第一次相遇的早期结果一致,我们发现较长的折返组往往会在相同方向上偏转几个小时。然而,与较早的研究相反,我们发现这些偏转没有独特的方向,尽管几个太阳能相遇显示出偏转方向的不均匀分布,对切向方向略有偏爱。该结果表明,换回的系统磁配置,这与互换重新连接作为源机制是一致的,尽管该新证据不排除其他机制,例如波模式的扩展。
Switchbacks are Aflvénic fluctuations in the solar wind, which exhibit large rotations in the magnetic field direction. Observations from Parker Solar Probe's (PSP's) first two solar encounters have formed the basis for many of the described switchback properties and generation mechanisms. However, this early data may not be representative of the typical near-Sun solar wind, biasing our current understanding of these phenomena. One defining switchback property is the magnetic deflection direction. During the first solar encounter, this was primarily in the tangential direction for the longest switchbacks, which has since been discussed as evidence, and a testable prediction, of several switchback generation methods. In this study, we re-examine the deflection direction of switchbacks during the first eight PSP encounters to confirm the existence of a systematic deflection direction. We first identify switchbacks exceeding a threshold deflection in the magnetic field and confirm a previous finding that they are arc-polarized. In agreement with earlier results from PSP's first encounter, we find that groups of longer switchbacks tend to deflect in the same direction for several hours. However, in contrast to earlier studies, we find that there is no unique direction for these deflections, although several solar encounters showed a non-uniform distribution in deflection direction with a slight preference for the tangential direction. This result suggests a systematic magnetic configuration for switchback generation, which is consistent with interchange reconnection as a source mechanism, although this new evidence does not rule out other mechanisms, such as the expansion of wave modes.