Solar Cycle Dependence of ICME Composition
arXiv:2106.03003 · doi:10.1007/s11207-021-01852-y
Abstract
Coronal mass ejections (CMEs) are one of the most energetic explosions in the solar atmosphere, and their occurrence rates exhibit obvious solar cycle dependence with more events taking place around solar maximum. Composition of interplanetary CMEs (ICMEs), referring to the charge states and elemental abundances of ions, opens an important avenue to investigate CMEs. In this paper, we conduct a statistical study on the 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 to 2011, and find that all the ICME compositions possess the solar cycle dependence. All of the ionic charge states and most of the relative elemental abundances are positively correlated with sunspot numbers (SSNs), and only the C/O ratios are inversely correlated with the SSNs. The compositions (except the C/O) increase with the SSNs during the ascending phase (1998--2000 and 2009--2011) and remain elevated during solar maximum and descending phase (2000--2005) compared to solar minimum (2007--2009). The charge states of low-FIP (first ionization potential) elements (Mg, Fe, and Si) and their relative abundances are correlated well, while no clear correlation is observed between the C/C or C/C and C/O. Most interestingly, we find that the Ne/O ratios of ICMEs and slow solar wind have the opposite solar cycle dependence.
20 pages, 4 figures and 1 table. Accepted by Solar Physics
References in corpus (15)
- Observations of an extreme storm in interplanetary space caused by successive coronal mass ejections
- Initiation and Early Kinematic Evolution of Solar Eruptions
- On the Relationship Between a Hot-channel-like Solar Magnetic Flux Rope and its embedded Prominence
- Magnetohydrodynamic Fast Sausage Waves in the Solar Corona
- Direct observations of magnetic flux rope formation during a solar coronal mass ejection
- Catastrophic eruption of magnetic flux rope in the corona and solar wind with and without magnetic reconnection
- The Origin of Solar Filament Plasma Inferred from in situ Observations of Elemental Abundances
- Acceleration phases of a solar filament during its eruption
- The Structure of Solar Coronal Mass Ejections in the Extreme-Ultraviolet Passbands
- Initiation and propagation of coronal mass ejections
- Do All Interplanetary Coronal Mass Ejections Have A Magnetic Flux Rope Structure Near 1 AU?
- The high helium abundance and charge states of the interplanetary CME and its material source on the Sun
- First Taste of Hot Channel in Interplanetary Space
- Sun-to-Earth Observations and Characteristics of Isolated Earth-Impacting Interplanetary Coronal Mass Ejections During 2008-2014
- What determine Solar Flares Producing Interplanetary Type III Radio Bursts?