Deflection of Coronal Mass Ejections in Unipolar Ambient Magnetic Fields

IF 4.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astrophysical Journal Pub Date : 2023-11-01 DOI:10.3847/1538-4357/acfe6c
Michal Ben-Nun, Tibor Török, Erika Palmerio, Cooper Downs, Viacheslav S. Titov, Mark G. Linton, Ronald M. Caplan, Roberto Lionello
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引用次数: 1

Abstract

Abstract The trajectories of coronal mass ejections (CMEs) are often seen to deviate substantially from a purely radial propagation direction. Such deviations occur predominantly in the corona and have been attributed to “channeling” or deflection of the eruptive flux by asymmetric ambient magnetic fields. Here, we investigate an additional mechanism that does not require any asymmetry of the preeruptive ambient field. Using magnetohydrodynamic numerical simulations, we show that the trajectories of CMEs through the solar corona can significantly deviate from the radial direction when propagation takes place in a unipolar radial field. We demonstrate that the deviation is most prominent below ∼15 R ⊙ and can be attributed to an “effective I × B force” that arises from the intrusion of a magnetic flux rope with a net axial electric current into a unipolar background field. These results are important for predictions of CME trajectories in the context of space-weather forecasts, as well as for reaching a deeper understanding of the fundamental physics underlying CME interactions with the ambient fields in the extended solar corona.
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单极环境磁场中日冕物质抛射的偏转
日冕物质抛射(CMEs)的轨迹通常与纯粹的径向传播方向有很大的偏离。这种偏差主要发生在日冕,并归因于不对称环境磁场对喷发通量的“疏导”或偏转。在这里,我们研究了一个额外的机制,不需要任何不对称的喷发前的环境场。通过磁流体动力学数值模拟,我们发现当日冕物质在单极径向场中传播时,日冕物质的运动轨迹会明显偏离径向。我们证明,偏差在~ 15 R⊙以下最为突出,并且可以归因于“有效的I × B力”,该力是由带净轴向电流的磁通绳侵入单极背景场而产生的。这些结果对于在空间天气预报的背景下预测日冕抛射轨迹,以及深入了解日冕抛射与环境场相互作用的基础物理非常重要。
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来源期刊
Astrophysical Journal
Astrophysical Journal 地学天文-天文与天体物理
CiteScore
8.40
自引率
30.60%
发文量
2854
审稿时长
1 months
期刊介绍: The Astrophysical Journal is the foremost research journal in the world devoted to recent developments, discoveries, and theories in astronomy and astrophysics.
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