Hydrogen and the Abundances of Elements in Gradual Solar Energetic-Particle Events
arXiv:1902.03208 · doi:10.1007/s11207-019-1460-4
Abstract
Despite its dominance, hydrogen has been largely ignored in studies of the abundance patterns of the chemical elements in gradual solar energetic-particle (SEP) events; those neglected abundances show a surprising new pattern of behavior. Abundance enhancements of elements with 2 <= Z <= 56, relative to coronal abundances, show a power-law dependence, versus their average mass-to-charge ratio A/Q, that varies from event to event and with time during events. The ion charge states Q depend upon the source plasma temperature T. For most gradual SEP events, shock waves have accelerated ambient coronal material with T < 2 MK with decreasing power-laws in A/Q. In this case, the proton abundances agree rather well with the power-law fits extrapolated from elements with Z >= 6 at A/Q > 2 down to hydrogen at A/Q = 1. Thus the abundances of the elements with Z >= 6 fairly accurately predict the observed abundance of H, at a similar velocity, in most SEP events. However, for those gradual SEP events where ion enhancements follow positive powers of A/Q, especially those with T > 2 MK where shock waves have reaccelerated residual suprathermal ions from previous impulsive SEP events, proton abundances commonly exceed the extrapolated expectation, usually by a factor of order ten. This is a new and unexpected pattern of behavior that is unique to the abundances of protons and may be related to the need for more streaming protons to produce sufficient waves for scattering and acceleration of more heavy ions at the shock.
30 pages, 10 figures, accepted for publication by Solar Physics
References in corpus (5)
- Abundance Enhancements in Impulsive Solar Energetic-Particle Events with Associated Coronal Mass Ejections
- Multi-Spacecraft Observations of Recurrent 3He-Rich 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
- Hydrogen and the Abundances of Elements in Impulsive Solar Energetic-Particle Events
Cited by in corpus (9)
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- Sixty Years of Element Abundance Measurements in Solar Energetic Particles
- Hydrogen and the Abundances of Elements in Impulsive Solar Energetic-Particle Events
- Distinguishing the Rigidity Dependences of Acceleration and Transport in Solar Energetic Particles
- Solar Energetic Particles: Spatial Extent and Implications of the H and He Abundances
- Excess H, Suppressed He, and the Abundances of Elements in Solar Energetic Particles
- Energy Spectra vs. Element Abundances in Solar Energetic Particles and the Roles of Magnetic Reconnection and Shock Acceleration
- Element Abundances of Solar Energetic Particles and the Photosphere, the Corona, and the Solar Wind
- Virtues of Including Hydrogen in the Patterns of Element Abundances in Solar Energetic Particles