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首页> 外文期刊>The Astrophysical journal >ANALYSIS OF INTERPLANETARY CORONAL MASS EJECTION PARAMETERS AS A FUNCTION OF ENERGETICS, SOURCE LOCATION, AND MAGNETIC STRUCTURE
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ANALYSIS OF INTERPLANETARY CORONAL MASS EJECTION PARAMETERS AS A FUNCTION OF ENERGETICS, SOURCE LOCATION, AND MAGNETIC STRUCTURE

机译:作为能量,源位置和磁结构的函数的行星际冠状物质射出参数的分析

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摘要

We describe a study of how ICME parameters vary as function of source location, associated flare magnitude, and magnetic structure. The strongest compositional enhancements are found to occur in events originating in central longitudes of the Sun, those with large associated flares, and those that are identified as magnetic clouds. In situ velocity is highest for events associated with large flares. Density has a strong negative correlation with associated flare size, but no strong trend with source longitude or magnetic cloud structure. Temperature is lower than expected for events originating in central longitudes, events associated with large flares, and for magnetic clouds. Total magnetic field is highest for events originating in central longitudes and for magnetic clouds. Combining these results, we suggest that ICMEs may have a basic structure consisting of a core (or cores) of magnetic cloud plasma and compositional signatures that are modulated by CME energetics, surrounded by an envelope with weaker signatures. If this core/envelope scenario is proven to be valid, that suggests that a larger percentage of energetic ICMEs may contain enhanced composition that is not detected by the current single track observations.
机译:我们描述了关于ICME参数如何随源位置,相关的耀斑幅度和磁结构变化的研究。发现最强的成分增强发生在起源于太阳中心经度的事件中,这些事件具有大的相关耀斑,以及那些被识别为磁云的事件。对于与大耀斑有关的事件,原位速度最高。密度与相关的耀斑大小有很强的负相关性,但与源经度或磁云结构没有明显的趋势。对于起源于中央经度的事件,与大耀斑有关的事件以及磁云,温度低于预期。对于源自中心经度的事件和磁云,总磁场最高。结合这些结果,我们建议ICME可能具有一个基本结构,该结构由一个或多个磁云等离子体的核和由CME高能调制的成分特征组成,并被具有较弱特征的包络包围。如果该核心/信封场景被证明是有效的,则表明更高比例的高能量ICME可能包含当前单轨观测未检测到的增强成分。

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