Numerical Study of the Longitudinally Asymmetric Distribution of Solar Energetic Particles in the Heliosphere
arXiv:1502.02683 · doi:10.1088/0067-0049/218/2/17
Abstract
Solar energetic particles (SEPs) affect the solar-terrestrial space environment and become a very important aspect in space weather research. In this work, we numerically investigate the transport processes of SEPs in three-dimensional interplanetary magnetic field, with an emphasis on the longitudinal distribution of SEPs in the heliosphere. We confirm our previous finding that there exists an east-west longitudinal asymmetry in the SEP intensities, i.e., with the same longitude separations between the solar source centers and the magnetic footpoint of the observer, the fluxes of SEP events originating from solar sources located on the eastern side of the nominal magnetic footpoint of the observer are systematically larger than those of the SEP events originating from sources located on the western side. We discuss the formation mechanism of this phenomenon, and conclude that the longitudinally asymmetric distribution of SEPs results from the east-west azimuthal asymmetry in the topology of the heliospheric magnetic field as well as the effects of perpendicular diffusion on the transport of SEPs in the heliosphere. Our results will be valuable to understanding Sun-Earth relations and useful for space weather forecasting.
Accepted for publication in ApJS
Cited by in corpus (6)
- On the East-West Longitudinally Asymmetric Distribution of Solar Proton Events
- Propagation of Solar Energetic Particles in Three-dimensional Interplanetary Magnetic Fields: Radial Dependence of Peak Intensities
- On the onset delays of solar energetic electrons and protons: Evidence for a common accelerator
- Solar activity relations in energetic electron events measured by the MESSENGER mission
- The impact of corotation on gradual solar energetic particle event intensity profiles
- Successive Coronal Mass Ejections Associated with Weak Solar Energetic Particle Events