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The Challenge in Making Models of Fast CMEs

机译:制作快速CMES模型的挑战

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It has been a challenge to explain theoretically how fast CMEs (exceeding ~ 1,000km/s) occur. Our numerical models suggest that it is not easy to release enough magnetic energy impulsively from an active region.We have been studying CME models that are constrained by observed magnetic fields, with realistic coronal plasma density and temperature profiles, as derived from thermodynamic models of the corona. We find that to get fast CMEs, the important parameters are the magnetic energy density, the magnetic field drop-off index, and the Alfvén speed profile in active regions. We describe how we energize active regions, and how we subsequently initiate CMEs via flux cancellation. We contrast CMEs from idealized zero-beta models with more sophisticated models based on thermodynamic solutions.
机译:从理论上解释CMES(超过〜1,000公里/秒)是一项挑战。我们的数模型表明,从活性区域冲动释放足够的磁能。我们已经研究了由观察到的磁场约束的CME模型,具有现实的冠状等离子体密度和温度型材,如来自的热力学模型电晕。我们发现,为了获得快速的CME,重要的参数是有源区中的磁能密度,磁场下降指标和Alfvén速度曲线。我们描述了我们如何激发活动区域,以及我们如何通过助焊剂取消启动CMES。我们从理想化的零点模型与基于热力学解决方案的更复杂模型对比CMES。

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