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ON THE EVOLUTION OF CORONAL MASS EJECTIONS IN THE INTERPLANETARY MEDIUM

机译:行星际介质中冠状物质喷射的演变

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摘要

Two coronal mass ejections (CMEs) are presented which were tracked through the LASCO field of view (FOV) within 30 R_☉ and later as interplanetary CMEs (ICMEs) through the SMEI FOV from 80 to 150 R_☉. They were also associated with erupting filaments observed by EIT, providing information on trajectory of propagation. This allowed three-dimensional reconstructions of CME/ICME geometry, along with corrected (not sky plane projected) measurements of distance-time (DT) plots for each event to ~0.5 AU. An investigation of morphology was conducted. The results suggest that fine structures of the CMEs are eroded by the solar wind, and curvature becomes more sharply convex outward, suggesting that ICME footpoints remain fixed to the Sun even at 0.5 AU. We also present two models describing the evolution of CMEs/ICMEs at large distances from the Sun (far from the launch mechanism and effects of gravity and solar pressure) and consider two drag models: aerodynamic drag and snowplow. There was little difference between these, and their DT profiles matched well with the SMEI data for event 1. Event 2 showed a net acceleration between the LASCO and SMEI FOVs and we could match the data for this event well by introducing a driving Lorentz force. ICME mass almost doubled as a result of swept-up solar wind material from the snowplow model. Finally, we compared the geometry and kinematics of the ICME with that produced by the HAFv2 model and found that the model reasonably matched the geometry, but overestimated the ICME speed.
机译:提出了两个日冕物质抛射(CME),它们在30R_☉内通过LASCO视场(FOV)进行跟踪,后来又通过SMEI FOV从80R_☉进行行星际CME(ICME)。它们还与EIT观察到的喷发细丝有关,从而提供了有关传播轨迹的信息。这样就可以对CME / ICME几何图形进行三维重建,以及将每个事件的距离-时间(DT)图的校正(非投影到天空)测量值提高到0.5 AU。进行了形态学研究。结果表明,CME的细微结构被太阳风侵蚀,并且曲率变得更加尖锐的向外凸出,这表明ICME脚位即使在0.5 AU时也固定在太阳上。我们还提出了两个模型,描述了距太阳很远的CME / ICME的演化(远没有发射机制以及重力和太阳压力的影响),并考虑了两个阻力模型:空气动力学阻力和扫雪机。它们之间几乎没有什么区别,它们的DT曲线与事件1的SMEI数据非常吻合。事件2显示LASCO和SMEI FOV之间存在净加速度,我们可以通过引入洛伦兹驱动力来使该事件的数据很好地匹配。由于扫雪机模型扫掠了太阳风,ICME的质量几乎翻了一番。最后,我们将ICME的几何学和运动学与HAFv2模型产生的几何学和运动学进行了比较,发现该模型合理地匹配了几何学,但高估了ICME的速度。

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