论文标题

活动区域12673的磁场环境产生了2017年9月的能量粒子事件

The magnetic field environment of active region 12673 that produced the energetic particle events of September 2017

论文作者

Yardley, Stephanie L., Green, Lucie M., James, Alexander W., Stansby, David, Mihailescu, Teodora

论文摘要

预测太阳能颗粒(SEP),并识别将要提前产生SEP事件的活性区域(ARS)的耀斑/CME非常具有挑战性。我们研究了AR 12673的磁场环境,包括AR的磁性构型,AR附近的周围场构型,衰减索引轮廓以及四个爆发事件的时间。两次爆发事件是9月4日(2017年9月4日,20:00〜UT,9月6日,11:56〜ut),而两项不是(9月4日在18:05〜UT,9月7日,14:33〜ut)。我们分析了一系列的EUV和白光冠状动脉观测以及潜在的外推出外推,发现与SEP生产性事件相关的CME要么触发无效点重新连接,从而重新导向了从火光位点重新导向烈性粒子到地球连接场,并具有明显的膨胀(并具有显着的地球形成)。衰减指数的变化速率具有高度,表明该区域可以产生快速的CME($ V> $ 1500〜 km〜s $^{ - 1} $),在第二和第三事件期间这样做。 AR的磁场环境,包括开放磁场的位点和空点以及CMES的磁场连接性和传播方向,在SEP逃脱和到达地球中起着重要作用。应研究其他SEP生产力的AR,以确定其磁场环境和CME传播方向是否在SEP逃脱和到达地球上是否显着。

Forecasting solar energetic particles (SEPs), and identifying flare/CMEs from active regions (ARs) that will produce SEP events in advance is extremely challenging. We investigate the magnetic field environment of AR 12673, including the AR's magnetic configuration, the surrounding field configuration in the vicinity of the AR, the decay index profile, and the footpoints of Earth-connected magnetic field, around the time of four eruptive events. Two of the eruptive events are SEP-productive (2017 September 4 at 20:00~UT and September 6 at 11:56~UT), while two are not (September 4 at 18:05~UT and September 7 at 14:33~UT). We analysed a range of EUV and white-light coronagraph observations along with potential field extrapolations and find that the CMEs associated with the SEP-productive events either trigger null point reconnection that redirects flare-accelerated particles from the flare site to the Earth-connected field and/or have a significant expansion (and shock formation) into the open Earth-connected field. The rate of change of the decay index with height indicates that the region could produce a fast CME ($v >$ 1500~km~s$^{-1}$), which it did during events two and three. The AR's magnetic field environment, including sites of open magnetic field and null points along with the magnetic field connectivity and propagation direction of the CMEs play an important role in the escape and arrival of SEPs at Earth. Other SEP-productive ARs should be investigated to determine whether their magnetic field environment and CME propagation direction are significant in the escape and arrival of SEPs at Earth.

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