Solar Energetic Particle Charge States and Abundances with Nonthermal Electrons
arXiv:2401.01604 · doi:10.3847/1538-4357/ad1ab6
Abstract
An important aspect of solar energetic particle (SEP) events is their source populations. Elemental abundance enhancements of impulsive SEP events, originating in presumed coronal reconnection episodes, can be fitted to steep power laws of A/Q, where A and Q are the atomic mass and ionic charge. Since thermal electron energies are enhanced and nonthermal electron distributions arise in the reconnection process, we might expect that ionic charge states Q would be increased through ionization interactions with those electron populations during the acceleration process. The temperature estimated from the SEPs corresponds to the charge state during the acceleration process, while the actual charge state measured in situ may be modified as the SEPs pass through the corona. We examine whether the temperature estimation from the A/Q would differ with various kappa values in a kappa function representing high-energy tail deviating from a Maxwellian velocity distribution. We find that the differences in the A/Q between a Maxwellian and an extreme kappa distribution are about 10-30%. We fit power-law enhancement of element abundances as a function of their A/Q with various kappa values. Then, we find that the derived source region temperature is not significantly affected by whether or not the electron velocity distribution deviates from a Maxwellian, i.e., thermal, distribution. Assuming that electrons are heated in the acceleration region, the agreement of the SEP charge state during acceleration with typical active region temperatures suggests that SEPs are accelerated and leave the acceleration region in a shorter time than the ionization time scale.
14 pages, 10 figures
References in corpus (11)
- CHIANTI -- an atomic database for emission lines -- Paper XVI: Version 10, further extensions
- Electron Acceleration during Macroscale Magnetic Reconnection
- Abundance Enhancements in Impulsive Solar Energetic-Particle Events with Associated Coronal Mass Ejections
- Four Distinct Pathways to the Element Abundances in Solar Energetic Particles
- 3He-Rich Solar Energetic Particles in Helical Jets on the Sun
- Variations in Abundance Enhancements in Impulsive Solar Energetic-Particle Events and Related CMEs and Flares
- A case-study of multi-temperature coronal jets for emerging flux MHD models
- 3He-Rich Solar Energetic Particles from Sunspot Jets
- Sixty Years of Element Abundance Measurements in Solar Energetic Particles
- Temperature in Solar Sources of 3He-rich Solar Energetic Particles and Relation to Ion Abundances
- Thermal and Non-Thermal Properties of Active Region Recurrent Coronal Jets