Cross-Field Transport of Solar Energetic Particles in a Large-Scale Fluctuating Magnetic Field
arXiv:1202.6010 · doi:10.1088/0004-637X/750/1/47
Abstract
The trajectories of Solar Energetic Particles (SEPs) in an Interplanetary Magnetic Field (IMF) exhibiting large-scale fluctuations due to footpoint motions originating in the photosphere, are simulated using a full-orbit test-particle code. The cross-field transport experienced by the particles in three propagation conditions (scatter-free, with scattering mean free path lambda=0.3 AU and lambda=2 AU) is characterized in the Parker spiral geometry. The role of expansion of the magnetic field with radial distance from the Sun is taken into consideration in the calculation of particle displacements and diffusion coefficients from the output of the simulations. It is found that transport across the magnetic field is enhanced in the lambda=0.3 AU and lambda=2 AU cases, compared to the scatter-free case. Values of the ratios of perpendicular to parallel diffusion coefficients vary between 0.01 and 0.08. The ratio of latitudinal to longitudinal diffusion coefficient perpendicular to the magnetic field is typically 0.2, suggesting that transport in latitude may be less efficient.
17 pages, 11 figures
References in corpus (1)
Cited by in corpus (10)
- Solar energetic particle access to distant longitudes through turbulent field-line meandering
- Drift-induced perpendicular transport of Solar Energetic Particles
- A Primer on Focused Solar Energetic Particle Transport: Basic physics and recent modelling results
- Modelling Solar Energetic Particle transport near a wavy Heliospheric Current Sheet
- Solar Energetic Particle transport near a Heliospheric Current Sheet
- 3D propagation of relativistic solar protons through interplanetary space
- Modelling the transport of relativistic solar protons along a heliospheric current sheet during historic GLE events
- Pitch-angle scattering in magnetostatic turbulence. I. Test-particle simulations and the validity of analytical results
- On the East-West Longitudinally Asymmetric Distribution of Solar Proton Events
- On the Turbulent Reduction of Drifts for Solar Energetic Particles