HR: 11:10h
AN: SA22A-04 INVITED [Abstracts]
TI: Highly Structured Plasma Density and Associated Electric and Magnetic Field Irregularities at Sub-Auroral, Middle, and Low Latitudes in the Topside Ionosphere Observed with the DEMETER and DMSP Satellites
AU: * Pfaff, R F
EM: Robert.F.Pfaff@nasa.gov
AF: NASAGoddard Space Flight Center, Mail Cod 674, Greenbelt, MD 20771, United States
AU: Liebrecht, C
EM: Carmen@lepwaves.gsfc.nasa.gov
AF: NASAGoddard Space Flight Center, Mail Cod 674, Greenbelt, MD 20771, United States
AU: Berthelier, J
EM: Jean-jacques.berthelier@cetp.ipsl.fr
AF: CETP, 4 Av. Neptune, St. Maur, France
AU: Parrot, M
EM: mparrot@cnrs-orleans.fr
AF: LPCE, 3A Avenue de la Recherche, Orleans, France
AU: Lebreton, J
EM: jean-pierre.lebreton@esa.int
AF: ESA, Keplerlaan 1, Noordwijk, Netherlands
AB:
Detailed observations of the plasma structure and irregularities that characterize the topside ionosphere at sub-
auroral, middle, and low-latitudes are gathered with probes on the DEMETER and DMSP satellites. In particular,
we present DEMETER observations near 700 km altitude that reveal: (1) the electric field irregularities and
density depletions at mid-latitudes are remarkably similar to those associated with equatorial spread-F at low
latitudes; (2) the mid-latitude density structures contain both depletions and enhancements with scale lengths
along the spacecraft trajectory that typically vary from 10's to 100's of km; (3) in some cases, ELF magnetic field
irregularities are observed in association with the electric field irregularities on the walls of the plasma density
structures and appear to be related to finely-structured spatial currents and/or Alfven waves; (4) during severe
geomagnetic storms, broad regions of nightside plasma density structures are typically present, in some
instances extending from the equator to the sub-auroral regions; and (5) intense, broadband electric and
magnetic field irregularities are observed at sub-auroral latitudes during geomagnetic storm periods that are
typically associated with the trough region. Data from successive DEMETER orbits during storm periods in both
the daytime and nighttime illustrate how enhancements of both the ambient plasma density, as well as sub-
auroral and mid-latitude density structures, correlate and evolve with changes in the Dst. The DEMETER data are
compared with near simultaneous observations gathered by the DMSP satellites near 840 km. The observations
are related to theories of sub-auroral and mid-latitude plasma density structuring during geomagnetic storms
and penetration electric fields and are highly germane to understanding space weather effects regarding
disruption of communication and navigation signals in the near-space environment.
DE: 2411 Electric fields (2712)
DE: 2439 Ionospheric irregularities
DE: 2443 Midlatitude ionosphere
DE: 2471 Plasma waves and instabilities (2772)
SC: SPA-Aeronomy [SA]
MN: 2007 Joint Assembly