HR: 0800h
AN: SM11A-0325 [Abstracts]
TI: Field-Aligned Current Dynamics and Its Dependence on Solar Wind Conditions
AU: * Wang, Y
EM: yongli.wang@nasa.gov
AF: UMBC/Goddard Earth Sciences and Technology Center, 5523 Research Park Drive,
Baltimore, MD 21228, United States
AU: Le, G
AF: NASA/Goddard Space Flight Center, 8800 Greenbelt Road, Greenbelt, MD 20771, United
States
AU: Boardsen, S A
AF: UMBC/Goddard Earth Sciences and Technology Center, 5523 Research Park Drive,
Baltimore, MD 21228, United States
AU: Slavin, J A
AF: NASA/Goddard Space Flight Center, 8800 Greenbelt Road, Greenbelt, MD 20771, United
States
AU: Strangeway, R J
AF: UCLA/Institute of Geophysics and Planetary Physics, 405 Hilgard Avenue, Los Angeles, CA
90095-1567, United States
AB:
Field-aligned currents (FACs) are the currents flowing into and out of the ionosphere which
connect to themagnetosphere. They provide an essential linkage between the solarwind-magnetosphere
system and the ionosphere, and the understanding of these currents is important for global magnetosphere
dynamics and space weather prediction. The three spacecraft ST5 constellation provides
an unprecedented opportunity to study in situ FAC dynamics in time scales that can not be
achieved by earlier studies with single spacecraft studies or large-spaced conjugate spacecraft studies.
In this study, we use the magnetic field observations during the whole ST5 mission to study
the dependence of FAC dynamics on solar wind conditions. FAC peak current densities show very
good correlations with some solar wind parameters, including IMF Bz, dynamic pressure, Ey, and
some IMF angles, but not with other parameters. Instant FAC speeds show generally much weaker
dependence on solar wind conditions comparing to FAC peak current densities. This obvious dislinkage
between FAC peak current densities and speeds implies that FAC peak current densities
are more controlled by solar wind conditions, while FAC speeds are more strongly controlled by
internal magnetosphere-ionosphere processes which can not be substantially representated by the
conventional solar wind parameters tested in this study.
DE: 2721 Field-aligned currents and current systems (2409)
DE: 2736 Magnetosphere/ionosphere interactions (2431)
DE: 2740 Magnetospheric configuration and dynamics
DE: 2784 Solar wind/magnetosphere interactions
SC: SPA-Magnetospheric Physics [SM]
MN: 2007 Fall Meeting