HR: 14:32h
AN: SM23B-04 INVITED [Abstracts]
TI: Global Sawtooth Oscillations of the Magnetosphere
AU: * Borovsky, J E
EM: jborovsky@lanl.gov
AF: Los Alamos National Laboratory, Mail Stop D466, Los Alamos, NM 87545
United States
AB:
During geomagnetic storms, geosynchronous-orbit satellites observe that the magnetosphere of the Earth will sometimes undergo
global sawtooth oscillations. Global sawtoth oscillations are characterized by a periodic stretching and collapse (crash) of
the dipole magnetic field at nearly all local times and by a periodic decline and rapid recovery of energetic-particle
fluxes at all local times. The rapid recovery of the fluxes can be dispersionless over a very large range of local times.
During sawtooth oscillations, the stretching of the field lines can be so great that the lobe is encountered at the equator
at geosynchronous orbit. At the time of sawtooth crash, there can be a jump in the magnitude of the Dst index. Statistically,
the solar wind that drives sawtooth oscillations has a low number density and a strong southward IMF, with normal to fast
speeds, and with low-levels of upstream MHD turbulence. This "sawtooth solar wind" is a low-Mach-number wind that creates an
unusual magnetosheath flow with extremely low beta values.
DE: 2720 Energetic particles, trapped
DE: 2730 Magnetosphere--inner
DE: 2740 Magnetospheric configuration and dynamics
DE: 2778 Ring current
DE: 2788 Storms and substorms
SC: SPA-Magnetospheric Physics [SM]
MN: 2004 AGU Fall Meeting