Composition Comparison between ICMEs from Active Regions and Quiet-Sun Regions
Jinrong Li, Hongqiang Song, Qi Lv, Hui Fu, Leping Li, Ruisheng Zheng,, and Yao Chen

TL;DR
This study compares the ionic charge states and elemental abundances of ICMEs from active and quiet Sun regions, revealing higher values in active-region ICMEs and a correlation with flare class, explaining solar cycle variations.
Contribution
It provides a comprehensive statistical analysis of ICME compositions from different solar regions and links these differences to flare activity and solar cycle dependence.
Findings
ICMEs from active regions have higher ionic charge states.
Active-region ICMEs show greater elemental abundances.
Composition correlates positively with flare class.
Abstract
The composition, including the ionic charge states and elemental abundances of heavy elements, within interplanetary coronal mass ejections (ICMEs) has tight correlations with their source regions and eruption processes. This can help analyze the eruption mechanisms and plasma origins of CMEs, and deepen our understanding of energetic solar activities. The active regions and quiet-Sun regions have different physical properties, thus from a statistical point of view, ICMEs originating from the two types of regions should exhibit different compositional characteristics. To demonstrate the differences comprehensively, we conduct survey studies on the ionic charge states of five elements (Mg, Fe, Si, C, and O) and the relative abundances of six elements (Mg/O, Fe/O, Si/O, C/O, Ne/O, and He/O) within ICMEs from 1998 February to 2011 August through the data of advanced composition explorer.…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Ionosphere and magnetosphere dynamics · Geophysics and Gravity Measurements
