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首页> 外文期刊>The Astrophysical journal >A Statistical Study of the Plasma and Composition Distribution inside Magnetic Clouds: 1998–2011
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A Statistical Study of the Plasma and Composition Distribution inside Magnetic Clouds: 1998–2011

机译:磁云中等离子体和组成分布的统计研究:1998-2011

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摘要

A comprehensive analysis of plasma and composition characteristics inside magnetic clouds (MCs) observed by the Advanced Composition Explorer spacecraft from 1998 February to 2011 August is presented. The results show that MCs have specific interior structures, and MCs of different speeds show differences in composition and structure. Compared with the slow MCs, fast MCs have enhanced mean charge states of iron, oxygen, silicon, magnesium, , , , and values. For ionic species in fast MCs, a higher atomic number represents a greater enhancement of mean charge state than slow MCs. We also find that both the fast and slow MCs display bimodal structure distribution in the mean iron charge state ( ), which suggests that the existence of flux rope prior to the eruption is common. Furthermore, the , , and ratio distribution inside fast MCs have the feature that the posterior peak is higher than the anterior one. This result agrees with the "standard model" for coronal mass ejection/flares, by which magnetic reconnection occurs beneath the flux rope, thereby ionizing the ions of the posterior part of the flux rope sufficiently by high-energy electron collisions or by direct heating in the reconnection region.
机译:提出了1998年2月至2011年8月从1998年观察到的磁云(MCS)内部磁云(MCS)的综合分析。结果表明,MCS具有特定的内部结构,不同速度的MCS显示了组成和结构的差异。与慢速MCS相比,快速MCS具有增强的铁,氧,硅,镁,和值的平均电荷状态。对于快速MCS中的离子物质,更高的原子数表示比慢MCS的平均电荷状态更大的增强。我们还发现,快速和慢速MCS在平均铁充电状态()中显示双峰结构分布,这表明在喷发之前存在助熔剂绳索是常见的。此外,快速MCS内部的和比分布具有后峰值高于前一个的特征。该结果与冠状质量喷射/耀斑的“标准模型”一致,通过该磁性重新连接发生磁通绳,从而通过高能量电子碰撞或通过直接加热电离磁通绳的后部的离子。重新连接区域。

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