论文标题
在冠状孔边界处进行小规模互换重新连接的统计证据
Statistical Evidence for Small-Scale Interchange Reconnection at a Coronal Hole Boundary
论文作者
论文摘要
冠状孔(CH)的大部分研究都集中在确定边界并尽可能准确地计算开放通量。但是,观察到的边界本身值得调查,并为在开放式和封闭场之间的界面上插入物理学的重要线索。这封信报告了一种强大的新方法,即相关积分的应用,我们称之为相关维度映射(CDM),可以客观地量化CH边界的不规则性。该方法强调了边界动力学中涉及的最重要的空间尺度,还可以轻松对边界进行时间分析。我们将这种方法应用于赤道CH,由头盔流媒体在两个方面,第三个由小型伪式流程器界定,我们在2015年6月4日以最大的节奏观察到了一个小时。我们认为,相关的空间尺度在$ \ sim 5-20 $ mm的范围内,并且我们发现边界复杂性依赖于近距离的结构。沿伪流的边界显示了高度定位的间歇性复杂性变异性的迹象,这可能与磁拓扑突然变化有关,这将通过交换重新连接优雅地解释。相比之下,头盔彩带边界支持长寿命的高复杂区域。这些发现支持了在电晕中非常小的尺度上发生的互换重新连接的最新预测。
Much of coronal hole (CH) research is focused upon determining the boundary and calculating the open flux as accurately as possible. However, the observed boundary itself is worthy of investigation, and holds important clues to the physics transpiring at the interface between the open and closed fields. This Letter reports a powerful new method, an application of the correlation integral which we call correlation dimension mapping (CDM), by which the irregularity of a CH boundary can be objectively quantified. This method highlights the most important spatial scales involved in boundary dynamics, and also allows for easy temporal analysis of the boundary. We apply this method to an equatorial CH bounded on two sides by helmet streamers and on the third by a small pseudostreamer, which we observed at maximum cadence for an hour on 2015 June 4. We argue that the relevant spatial scales are in the range of $\sim 5-20$ Mm, and we find that boundary complexity depends measurably upon the nature of the neighboring closed structure. The boundary along the pseudostreamer shows signs of highly-localized, intermittent complexity variability, likely associated with abrupt changes in the magnetic topology, which would be elegantly explained by interchange reconnection. By contrast, the helmet streamer boundary supports long-lived high-complexity regions. These findings support the recent predictions of interchange reconnection occurring at very small scales in the corona.