论文标题

通过扫描CME驱动的快速模式冲击而引起的磁重新连接

Magnetic Reconnection Invoked by Sweeping of the CME-Driven Fast-Mode Shock

论文作者

Zhou, Guiping, Gao, Guannan, Wang, Jingxiu, Lin, Jun, Su, Yingna, Jin, Chunlan, Zhang, Yuzong

论文摘要

冠状波在太阳大气中无处不在。它们不仅在自己丰富的物理学中很重要,而且对触发遥控器中的磁性喷发的重要候选者很重要。但是,以后的机制从未被直接证实。通过重新审视2012年3月7日的连续爆发,可以确定快速模式冲击,以说明X5.4耀斑相关的EUV波的速度为550 km/s,并且在慢速上升阶段的相应冠状质量排放的前面的2060美元$ \ pm $ 270 km/s的速度更快。它们不仅比本地AlfVEN速度的传播速度快得多,而且还伴随着II型无线电爆发,即冲击波的典型特征。观察结果表明,冲击波打扰了连接活跃区域(ARS)11429和11430的冠状环C1,这是邻近的空点区域。在40分钟振荡之后,零点区域发生了外部磁重新连接(EMR)。大约10分钟后,C1覆盖的大规模磁通绳(MFR)变得不稳定并迅速爆发。人们认为快速模式冲击在零点区域触发了EMR,并引起了随后的喷发。首次直接观察到这种情况,并为理解太阳活动和喷发的物理学提供了新的提示。

Coronal waves exist ubiquitously in the solar atmosphere. They are important not only in their own rich physics but also essential candidates of triggering magnetic eruptions in the remote. However, the later mechanism has never been directly confirmed. By revisiting the successive eruptions on 2012 March 7, fast-mode shocks are identified to account for the X5.4 flare-related EUV wave with a velocity of 550 km/s, and appeared faster than 2060$\pm$270 km/s at the front of the corresponding coronal mass ejection in the slow-rising phase. They not only propagated much faster than the local Alfven speed of about 260 km/s, but also simultaneously accompanied by type II radio burst, i.e., a typical feature of shock wave. The observations show that the shock wave disturbs the coronal loops C1 connecting active regions (ARs) 11429 and 11430, which is neighboring a null point region. Following a 40-min-oscillation, an external magnetic reconnection (EMR) occurred in the null point region. About 10 min later, a large-scale magnetic flux rope (MFR) overlaid by the C1 became unstable and erupted quickly. It is thought that the fast-mode shock triggered EMR in the null point region and caused the subsequent eruptions. This scenario is observed directly for the first time, and provides new hint for understanding the physics of solar activities and eruptions.

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