The Common Origin of High-energy Protons in Solar Energetic Particle Events and Sustained Gamma-ray Emission from the Sun
arXiv:2105.01206 · doi:10.3847/1538-4357/ac004f
Abstract
We report that the number of > 500 MeV protons (Ng) inferred from sustained gamma ray emission (SGRE) from the Sun is significantly correlated with that of protons propagating into space (NSEP) as solar energetic particles (SEPs). Under the shock paradigm for SGRE, shocks driven by coronal mass ejections (CMEs) accelerate high-energy protons sending them toward the Sun to produce SGRE by interacting with the atmospheric particles. Particles also escape into the space away from the Sun to be detected as SEP events. Therefore, the significant NSEP vs. Ng correlation (correlation coefficient 0.77) is consistent with the common shock origin for the two proton populations. Furthermore, the underlying CMEs have properties akin to those involved in ground level enhancement (GLE) events indicating the presence of high-energy (up to GeV) particles required for SGRE. We show that the observed gamma-ray flux is an underestimate in limb events (central meridian distance > 60 degrees) because SGRE sources are partially occulted when the emission is spatially extended. With the assumption that the SEP spectrum at the shock nose is hard and that the 100 MeV particles are accelerated throughout the shock surface (half width in the range 60 to 120 degrees) we find that the latitudinal widths of SEP distributions are energy dependent with the smallest width at the highest energies. Not using the energy-dependent width results in an underestimate of NSEP in SGRE events occurring at relatively higher latitudes. Taking these two effects into account removes the apparent lack of NSEP - Ng correlation reported in previous studies.
17 pages, 4 figures, 1 table, to appear in the Astrophysical Journal
References in corpus (12)
- Major Solar Eruptions and High Energy Particle Events during Solar Cycle 24
- Large Solar Energetic Particle Events Associated with Filament Eruptions Outside of Active Regions
- Fermi-LAT Observations of High-energy Behind-the-limb Solar Flares
- First detection of >100 MeV gamma rays associated with a behind-the-limb solar flare
- The 2012 July 23 Backside Eruption: An Extreme Energetic Particle Event?
- The First Fermi-LAT Solar Flare Catalog
- Comparing Long-Duration Gamma-Ray Flares and High-Energy Solar Energetic Particles
- Evidence for a Coronal Shock Wave Origin for Relativistic Protons Producing Solar Gamma-Rays and Observed by Neutron Monitors at Earth
- 3D propagation of relativistic solar protons through interplanetary space
- Source of Energetic Protons in the 2014 September 1 Sustained Gamma-ray Emission Event
- A Hierarchical Relationship between the Fluence Spectra and CME Kinematics in Large Solar Energetic Particle Events: A Radio Perspective
- On the Shock Source of Sustained Gamma-Ray Emission from the Sun