HR: 1340h
AN: SH23A-0338 [Abstracts]
TI: Ionospheric D and E region plasma density enhancements caused by X17-class solar flare on September 7,
2005 - an Arecibo perspective.
AU: * Vo, H
EM: hvo@naic.edu
AF: Arecibo Observatory, HC3 BOX 53995, Arecibo, PR 00612
AU: Gonzalez, S A
EM: sixto@naic.edu
AF: Arecibo Observatory, HC3 BOX 53995, Arecibo, PR 00612
AU: Sulzer, M P
EM: sulzer@naic.edu
AF: Arecibo Observatory, HC3 BOX 53995, Arecibo, PR 00612
AU: Aponte, N
EM: naponte@naic.edu
AF: Arecibo Observatory, HC3 BOX 53995, Arecibo, PR 00612
AU: Eccles, V
SH23A-0338
AF: 1Space Environment Corporation, 221 N. Spring Creek Parkway, Suite A,
Providence, UT 84332-9791
1Space Environment Corporation, 221 N. Spring Creek Parkway, Suite A,
Providence, UT 84332-9791
Space Environment Corporation, 221 N. Spring Creek Parkway, Suite A, Providence, UT 84332-9791
AU: Sojka, J
SH23A-0338
AF: 1Space Environment Corporation, 221 N. Spring Creek Parkway, Suite A,
Providence, UT 84332-9791
1Space Environment Corporation, 221 N. Spring Creek Parkway, Suite A,
Providence, UT 84332-9791
Space Environment Corporation, 221 N. Spring Creek Parkway, Suite A, Providence, UT 84332-9791
AB:
On September 7, 2005 at 1740 UT, Earth orbiting
satellies detected a major X17-class solar flare coming from the
Sun's eastern limb. The blast caused a complete blackout of HF radio
transmissions on the daylit side of Earth. The Arecibo Incohenrent
scatter radar was operating as part of the World Month campaign. The
radar's power profile (60-500 km) and coded long pulse (CLP) Ion Line
experiments were used to get D, E, and F region electron density
profiles, and E and F region spectra for temperature, composition,
and velocity measurements. High resolution (150 m) plasma line
profiles using the observatory's new digital receiver were measured
during part of the period.
Returned scattered power profiles indicated great enhancement in the
D and E region, allowing us to estimate the density enhancement due
to this large solar flare. Theoretical support is provided with the
Data-Driven D region electron density model together with the
Ionospheric Forecast Model developed by the Space Environment
Corporation
DE: 2443 Midlatitude ionosphere
DE: 2447 Modeling and forecasting
DE: 2467 Plasma temperature and density
SC: SPA-Solar and Heliospheric Physics [SH]
MN: Fall Meeting 2005