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A NUMERICAL STUDY OF LONG-RANGE MAGNETIC IMPACTS DURING CORONAL MASS EJECTIONS

机译:冠状物质抛射过程中大范围磁场影响的数值研究

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With the global view and high-cadence observations from Solar Dynamics Observatory/Atmospheric Imaging Assembly and Solar TErrestrial RElations Observatory, many spatially separated solar eruptive events appear to be coupled. However, the mechanisms for "sympathetic" events are still largely unknown. In this study, we investigate the impact of an erupting flux rope on surrounding solar structures through large-scale magnetic coupling. We build a realistic environment of the solar corona on 2011 February 15 using a global magnetohydrodynamics model and initiate coronal mass ejections (CMEs) in active region 11158 by inserting Gibson–Low analytical flux ropes. We show that a CME's impact on the surrounding structures depends not only on the magnetic strength of these structures and their distance to the source region, but also on the interaction between the CME and the large-scale magnetic field. Within the CME expansion domain where the flux rope field directly interacts with the solar structures, expansion-induced reconnection often modifies the overlying field, thereby increasing the decay index. This effect may provide a primary coupling mechanism underlying the sympathetic eruptions. The magnitude of the impact is found to depend on the orientation of the erupting flux rope, with the largest impacts occurring when the flux rope is favorably oriented for reconnecting with the surrounding regions. Outside the CME expansion domain, the influence of the CME is mainly through field line compression or post-eruption relaxation. Based on our numerical experiments, we discuss a way to quantify the eruption impact, which could be useful for forecasting purposes.
机译:在太阳动力学天文台/大气成像组件和太阳地球关系天文台的全球视野和高节奏的观察下,许多在空间上分开的太阳爆发事件似乎是耦合的。但是,“同情”事件的机制仍然很大程度上未知。在这项研究中,我们通过大规模的磁耦合研究了喷发的通量绳对周围太阳结构的影响。我们使用全局磁流体动力学模型在2011年2月15日建立了一个真实的太阳日冕环境,并通过插入Gibson–Low分析通量绳在活动区域​​11158中启动了日冕物质抛射(CME)。我们表明,CME对周围结构的影响不仅取决于这些结构的磁强度及其与源区域的距离,还取决于CME与大范围磁场之间的相互作用。在CME膨胀域中,通量绳场直接与太阳能结构相互作用,膨胀引起的重新连接常常会改变上覆的场,从而增加衰减指数。这种作用可以提供交感性爆发基础的主要耦合机制。发现冲击的强度取决于喷发的通量绳的方向,当通量绳被有利地定向以与周围区域重新连接时,发生最大的冲击。在CME扩展域之外,CME的影响主要是通过场线压缩或喷发后弛豫。基于我们的数值实验,我们讨论了一种量化喷发影响的方法,这可能对预测有用。

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