Solar Energetic Particle drifts in the Parker spiral
arXiv:1307.2165 · doi:10.1002/jgra.50589
Abstract
Drifts in the Parker spiral interplanetary magnetic field are known to be an important component in the propagation of galactic cosmic rays, while they are thought to be negligible for Solar Energetic Particles (SEPs). As a result they have so far been ignored in SEP propagation modelling and data analysis. We examine drift velocities in the Parker spiral within single particle first-order adiabatic theory, in a local coordinate system with an axis parallel to the magnetic field. We show that, in the presence of scattering in interplanetary space, protons at the high end of the SEP energy range experience significant gradient and curvature drift. In the scatter-free case, drift due to magnetic field curvature is present. The magnitude of drift velocity increases by more than an order of magnitude at high heliographic latitudes compared to near the ecliptic; it has a strong dependence on radial distance r from the Sun, reaching a maximum at r~1 AU at low heliolatitudes and r~10 AU at high heliolatitudes. Due to the mass over charge dependence of drift velocities, the effect of drift for partially ionised SEP heavy ions is stronger than for protons. Drift is therefore likely to be a considerable source of cross field transport for high energy SEPs.
7 pages, 4 figures, submitted to Journal of Geophysical Research - Space Physics
Cited by in corpus (33)
- Acceleration and propagation of Solar Energetic Particles
- Modelling three-dimensional transport of solar energetic protons in a corotating interaction region generated with EUHFORIA
- Parameter estimation of superdiffusive motion of energetic particles upstream of heliospheric shocks
- From Sun to interplanetary space: What is the pathlength of Solar Energetic Particles?
- A Primer on Focused Solar Energetic Particle Transport: Basic physics and recent modelling results
- Correcting for interplanetary scattering in velocity dispersion analysis of solar energetic particles
- 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
- High Energy Solar Particle Events and Their Relationship to Associated Flare, CME and GLE Parameters
- Empirical Model of 10-130 MeV Solar Energetic Particle Spectra at 1 AU Based on Coronal Mass Ejection Speed and Direction
- Modelling the transport of relativistic solar protons along a heliospheric current sheet during historic GLE events
- The effect of drifts on the decay phase of SEP events
- Solar Energetic Particle drifts and the energy dependence of 1 AU charge states
- Solar Energetic Particle Forecasting Algorithms and Associated False Alarms
- Time dependence of Fe/O ratio within a 3D Solar Energetic Particle propagation model including drift
- The multi-spacecraft high-energy solar particle event of 28 October 2021
- Energetic Proton Back-Precipitation onto the Solar Atmosphere in Relation to Long-Duration Gamma-Ray Flares
- An analytical model of turbulence in Parker spiral geometry and associated magnetic field line lengths
- Effect of acceleration and escape of energetic particles on spectral steepening at shocks
- Solar Energetic Particle event onsets at different heliolongitudes: The effect of turbulence in Parker Spiral Geometry
- Time Evolution of Elemental Ratios in Solar Energetic Particle events
- The impact of corotation on gradual solar energetic particle event intensity profiles
- Radial dependence of ion fluences in the 2023 July 17 SEP event from Parker Solar Probe to STEREO and ACE
- Forecasting Solar Energetic Particle Fluence with Multi-Spacecraft Observations
- Interplay of large-scale drift and turbulence in the heliospheric propagation of solar energetic particles
- Forecasting >300 MeV SEP events: Extending SPARX to high energies
- Dynamics of energetic particles scattered in the solar wind : Magnetohydrodynamics and test-particle simulations
- Modelling shock-like injections of solar energetic particles with 3D test particle simulations
- Detection asymmetry in solar energetic particle events
- Energy-dependent SEP Fe/O abundances during the May 2024 superstorm
- Current sheets, plasmoids and flux ropes in the heliosphere. Part II: Theoretical aspects
- On the Turbulent Reduction of Drifts for Solar Energetic Particles