HR: 16:00h
AN: SM22D-01 [PDF]
TI: Substorm Onset by Plasma Sheet Divergence
AU: * Lyons, L R
EM: larry@atmos.ucla.edu
AF: Department of Atmospheric Sciences, UCLA, Los Angeles, CA 90095-1565 United States
AU: Wang, C
EM: cat@atmos.ucla.edu
AF: Department of Atmospheric Sciences, UCLA, Los Angeles, CA 90095-1565 United States
AU: Nagai, T
EM: nagai@geo.titech.ac.jp
AF: Tokyo Institute of Technology, Ookayama 2-12-1, Meguro, Tokyo, 152-8551
Japan
AB:
It is necessary to understand current wedge formation in order to understand the cause of the substorm expansion phase.
Geotail spacecraft observations have shown that the inner-plasma-sheet cross-tail current reduction within the current wedge
results from a process that leads to a reduction in equatorial plasma pressure and a substantial reduction in flux tube ion
content. We use the single-species continuity equation for plasma sheet particles to identify a plausible cause of these
plasma reductions. We find that a convection reduction, which follows a growth phase period of enhanced convection, should
cause a divergence of plasma sheet particles driven by diamagnetic drift that leads to flux tube content reduction. Such
reduction in flux tube content is longitudinally localized to the pre-midnight to midnight region where the current wedge has
been observed to initially form and must initiate within the region of the equatorial mapping of the Harang discontinuity,
consistent with ionospheric observations of substorm onset. We also find that the reduction in flux tube content should
initially develop slowly, and then develop more rapidly as the current wedge forms. This is consistent with observations
which show that expansion phase aurora, and thus also the current wedge, develops slowly for a few minutes before brightening
rapidly, and it is as required if plasma sheet divergence driven by diamagnetic drift leads to current wedge formation and
initiation of the substorm expansion phase.
UR: http://www.atmos.ucla.edu/~larry
DE: 2431 Ionosphere/magnetosphere interactions (2736)
DE: 2736 Magnetosphere/ionosphere interactions
DE: 2764 Plasma sheet
DE: 2788 Storms and substorms
SC: SPA - Magnetospheric Physics [SM]
MN: 2003 Fall Meeting