HR: 1340h
AN: SA33B-1332 [Abstracts]
TI: Generation and characteristics of equatorial spread F plasma bubbles during intense magnetic storms
AU: * Huang, C
EM: cshuang@haystack.mit.edu
AF: Massachusetts Institute of Technology, Haystack Observatory, Westford, MA 01886, United
States
AU: Foster, J C
EM: jcf@haystack.mit.edu
AF: Massachusetts Institute of Technology, Haystack Observatory, Westford, MA 01886, United
States
AB:
Magnetic storms represent very large disturbances in the magnetosphere and ionosphere. Equatorial spread F
(ESF) is a process that causes plasma density irregularities in the equatorial F region. However, it is not well
understood how magnetic storms affect the generation of ESF plasma bubbles. We will present the
measurements of the evening equatorial ion density and velocity by the Defense Meteorological Satellite Program
(DMSP) satellites and the Jicamarca incoherent scatter radar during twenty-three intense magnetic storms with
minimum Dst value of smaller than -100 nT. The radar measurements show that penetration electric field during
southward interplanetary magnetic field (IMF) is eastward in the evening sector and lifts the equatorial F region
there. The DMSP measurements show that deep equatorial ion density depletions (ESF plasma bubbles) are
generated after the IMF turns southward. The time delay between the IMF southward turning and the first DMSP
detection of ion density depletions becomes shorter when the interplanetary electric field during southward IMF,
correspondingly an eastward penetration electric field in the evening equatorial ionosphere, is larger. The results
of this study provide strong evidence that enhanced magnetic activity increases the generation of ESF plasma
bubbles during the main phase of magnetic storms. We will also present the observations of a case in which the
plasma density depletions occurred at middle magnetic latitudes, as well as at equatorial latitudes. The
depletions at middle latitudes (20-46 deg) were identified as the extension of depleted flux tubes into these
latitudes. It implies that the plasma bubbles might have reached the altitude of 6800 km over the magnetic
equator. The observations may represent the highest altitude/latitude of plasma bubbles that has ever been
reported in the literature.
DE: 2411 Electric fields (2712)
DE: 2415 Equatorial ionosphere
DE: 2439 Ionospheric irregularities
DE: 2471 Plasma waves and instabilities (2772)
DE: 2788 Magnetic storms and substorms (7954)
SC: SPA-Aeronomy [SA]
MN: 2007 Fall Meeting