HR: 0800h
AN: SA21B-0353 [Abstracts]
TI: The Response of Mid-Latitude Ionospheric TEC to Geomagnetic Storms and Solar Flares
AU: Huang, Z
EM: zhen_huang@lanl.gov
AU: * Roussel-Dupre, R
EM: rroussel-dupre@lanl.gov
AB:
The effects of geomagnetic storms and solar flares on the ionosphere are manifested as large magnitude sudden fluctuations in
the Total Electron Content (TEC). In this study, the broadband VHF signal (30-100MHz) data from the Los Alamos Portable
Pulser (LAPP) received by the FORTE (Fast Onboard Recording of Transient Events) satellite during the period of 1997-2002 are
used to investigate the mean TEC variation response to geomagnetic storm. A total of 14 geomagnetic storms are selected
where FORTE-LAPP data are available to derive average TECs during extended storm-time and non-storm time for a given storm.
The variations in the ionospheric TECs at Los Alamos, New Mexico are investigated for the 14 selected geomagnetic storms. In
most cases (12 out of 14), we see overall enhancements in TEC as a result of geomagnetic storm impact at Los Alamos. The
relative enhancements in TEC at Los Alamos due to a geomagnetic storm can reach as high as 3-fold of the normal TEC values.
The overall absolute enhancements in TEC at Los Alamos are up to about 30 TECU. The magnitude of TEC enhancements is
diversified over all storm categories without a clean-cut relationship between the storm intensity and the TEC enhancement.
The mean TEC variation response to geomagnetic storm can be complicated when several consecutive storms occurred in a row and
a net TEC reduction may be seen. Data of continuous GPS TEC measurements are collected at a 1-minute time resolution during
July 2004 when 5 X-class solar flares occurred from two Allen Osborne Associates ICS-4000Z GPS receivers mounted at the
Physics Building at Los Alamos National Laboratory. In detecting effects of solar flares on the ionospheric TEC, we apply
appropriate filtering to remove the linear trend of TEC and a coherent processing of TEC variations simultaneously for all
the visible GPS satellites in a given time interval. The responses of ionospheric TEC at minute time scale to these powerful
impulsive solar flares are investigated. The onset time of the ionospheric response and the magnitude of the TEC fluctuations
and its time derivative are examined along with their relationships with the solar flux characteristics, duration of the
flare and location of the flare on the Sun, X-ray emission variations during the flares, and local time of the flare
occurrence.
DE: 6934 Ionospheric propagation (2487)
DE: 6964 Radio wave propagation
DE: 2400 IONOSPHERE
DE: 2443 Midlatitude ionosphere
SC: SPA-Aeronomy [SA]
MN: 2004 AGU Fall Meeting