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首页> 外文期刊>The Astrophysical journal >MAGNETOHYDRODYNAMIC SIMULATION OF THE X2.2 SOLAR FLARE ON 2011 FEBRUARY 15. II. DYNAMICS CONNECTING THE SOLAR FLARE AND THE CORONAL MASS EJECTION
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MAGNETOHYDRODYNAMIC SIMULATION OF THE X2.2 SOLAR FLARE ON 2011 FEBRUARY 15. II. DYNAMICS CONNECTING THE SOLAR FLARE AND THE CORONAL MASS EJECTION

机译:X2.2太阳耀斑在2011年2月15日的磁氢动力学模拟。连接太阳耀斑和冠状动脉喷射的动力学

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We clarify a relationship between the dynamics of a solar flare and a growing coronal mass ejection (CME) by investigating the dynamics of magnetic fields during the X2.2-class flare taking place in the solar active region 11158 on 2011 February 15, based on simulation results obtained from Inoue et al. We found that the strongly twisted lines formed through tether-cutting reconnection in the twisted lines of a nonlinear force-free field can break the force balance within the magnetic field, resulting in their launch from the solar surface. We further discover that a large-scale flux tube is formed during the eruption as a result of the tether-cutting reconnection between the eruptive strongly twisted lines and these ambient weakly twisted lines. The newly formed large flux tube exceeds the critical height of the torus instability. Tether-cutting reconnection thus plays an important role in the triggering of a CME. Furthermore, we found that the tangential fields at the solar surface illustrate different phases in the formation of the flux tube and its ascending phase over the threshold of the torus instability. We will discuss these dynamics in detail.
机译:我们通过调查2011年2月15日在太阳活动区域11158发生的X2.2级耀斑期间的磁场动力学,来阐明太阳耀斑的动力学与日冕质量抛射(CME)的关系,基于从Inoue等人获得的模拟结果。我们发现,通过在无力非线性场的扭曲线中重新进行系绳切割连接而形成的强烈扭曲线会破坏磁场内的力平衡,从而导致它们从太阳表面发射出去。我们进一步发现,喷发过程中由于喷发的强烈扭曲线与这些周围的弱扭曲线之间的系绳切割重新连接而形成了大规模通量管。新形成的大通量管超过了环面不稳定性的临界高度。因此,切断系绳的重新连接在触发CME中起着重要作用。此外,我们发现在太阳表面的切线场说明了通量管形成过程中的不同阶段及其在环面不稳定性阈值之上的上升阶段。我们将详细讨论这些动态。

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