Comparing Long-Duration Gamma-Ray Flares and High-Energy Solar Energetic Particles
arXiv:1905.12878 · doi:10.3847/1538-4357/ab258f
Abstract
Little is known about the origin of the high-energy and sustained emission from solar Long-Duration Gamma-Ray Flares (LDGRFs), identified with the Compton Gamma Ray Observatory (CGRO), the Solar Maximum Mission (SMM), and now Fermi. Though Fermi/Large Area Space Telescope (LAT) has identified dozens of flares with LDGRF signature, the nature of this phenomenon has been a challenge to explain both due to the extreme energies and long durations. The highest-energy emission has generally been attributed to pion production from the interaction of >300 MeV protons with the ambient matter. The extended duration suggests that particle acceleration occurs over large volumes extending high in the corona, either from stochastic acceleration within large coronal loops or from back precipitation from coronal mass ejection driven shocks. It is possible to test these models by making direct comparison between the properties of the accelerated ion population producing the gamma-ray emission derived from the Fermi/LAT observations, and the characteristics of solar energetic particles (SEPs) measured by the Payload for Matter-Antimatter Exploration and Light Nuclei Astrophysics (PAMELA) spacecraft in the energy range corresponding to the pion-related emission detected with Fermi. For fourteen of these events we compare the two populations -- SEPs in space and the interacting particles at the Sun -- and discuss the implications in terms of potential sources. Our analysis shows that the two proton numbers are poorly correlated, with their ratio spanning more than five orders of magnitude, suggesting that the back precipitation of shock-acceleration particles is unlikely the source of the LDGRF emission.
Accepted for publication in ApJ
References in corpus (9)
- Global Energetics of Solar Flares: V. Energy Closure in Flares and Coronal Mass Ejections
- Large Solar Energetic Particle Events Associated with Filament Eruptions Outside of Active Regions
- Fermi-LAT Observations of High-energy Behind-the-limb Solar Flares
- Ground Level Enhancement in the 2014 January 6 Solar Energetic Particle Event
- Spectral Analysis of the September 2017 Solar Energetic Particle Events
- Soft X-ray Fluxes of Major Flares Far Behind the Limb as Estimated Using STEREO EUV Images
- Calibration of the GOES-13/15 high energy proton detectors based on the PAMELA solar energetic particle observations
- A Hierarchical Relationship between the Fluence Spectra and CME Kinematics in Large Solar Energetic Particle Events: A Radio Perspective
- Geomagnetically trapped, albedo and solar energetic particles: trajectory analysis and flux reconstruction with PAMELA
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- Evidence for a Coronal Shock Wave Origin for Relativistic Protons Producing Solar Gamma-Rays and Observed by Neutron Monitors at Earth
- Empirical Model of 10-130 MeV Solar Energetic Particle Spectra at 1 AU Based on Coronal Mass Ejection Speed and Direction
- Source of Energetic Protons in the 2014 September 1 Sustained Gamma-ray Emission Event
- The coupling of an EUV coronal wave and ion acceleration in a Fermi-LAT behind-the-limb solar flare
- Evidence for flare-accelerated particles in large scale loops in the behind-the-limb gamma-ray solar flare of September 29, 2022
- Modelling Solar Energetic Neutral Atoms from Solar Flares and CME-driven Shocks