TY - JOUR
T1 - MHD/particle simulations of radiation belt dynamics
AU - Elkington, Scot R.
AU - Hudson, Mary K.
AU - Wiltberger, Michael J.
AU - Lyon, John G.
PY - 2002
Y1 - 2002
N2 - Particle fluxes in the outer radiation belts can show substantial variation in time, over scales ranging from a few minutes, such as during the sudden commencement phase of geomagnetic storms, to the years-long variations associated with the progression of the solar cycle. As the energetic particles comprising these belts can pose a hazard to human activity in space, considerable effort has gone into understanding both the source of these particles and the physics governing their dynamical behavior. Computationally tracking individual test particles in a model magnetosphere represents a very direct, physically-based approach to modelling storm-time radiation belt dynamics. Using global magnetohydrodynamic models of the Earth-Sun system coupled with test particle simulations of the radiation belts, we show through two examples that such simulations are capable of capturing the outer zone radiation belt configuration at a variety of time scales and through all phases of a geomagnetic storm. Such simulations provide a physically-based method of investigating the dynamics of the outer radiation zone, and hold promise as a viable method of providing global nowcasts of the radiation environment during geomagnetically active periods.
AB - Particle fluxes in the outer radiation belts can show substantial variation in time, over scales ranging from a few minutes, such as during the sudden commencement phase of geomagnetic storms, to the years-long variations associated with the progression of the solar cycle. As the energetic particles comprising these belts can pose a hazard to human activity in space, considerable effort has gone into understanding both the source of these particles and the physics governing their dynamical behavior. Computationally tracking individual test particles in a model magnetosphere represents a very direct, physically-based approach to modelling storm-time radiation belt dynamics. Using global magnetohydrodynamic models of the Earth-Sun system coupled with test particle simulations of the radiation belts, we show through two examples that such simulations are capable of capturing the outer zone radiation belt configuration at a variety of time scales and through all phases of a geomagnetic storm. Such simulations provide a physically-based method of investigating the dynamics of the outer radiation zone, and hold promise as a viable method of providing global nowcasts of the radiation environment during geomagnetically active periods.
KW - Inner magnetosphere
KW - MHD/particle simulations
KW - Magnetospheric storms
KW - Radiation belts
KW - Space weather
UR - https://www.scopus.com/pages/publications/0036307771
U2 - 10.1016/S1364-6826(02)00018-4
DO - 10.1016/S1364-6826(02)00018-4
M3 - Article
AN - SCOPUS:0036307771
SN - 1364-6826
VL - 64
SP - 607
EP - 615
JO - Journal of Atmospheric and Solar-Terrestrial Physics
JF - Journal of Atmospheric and Solar-Terrestrial Physics
IS - 5-6
ER -