HR: 1340h
AN: SA13A-1090 [Abstracts]
TI: Daytime Observations of Mid-latitude Sporadic-E and QP Radar Echoes
AU: * Pfaff, R F
EM: Robert.F.Pfaff@nasa.gov
AF: NASA/Goddard Space Flight Center, Space Weather Laboratory, Greenbelt, MD 20771,
United States
AU: Liebrecht, C
EM: Maria.C.Liebrecht@nasa.gov
AF: NASA/Goddard Space Flight Center, Space Weather Laboratory, Greenbelt, MD 20771,
United States
AU: Urbina, J
EM: jurbina@engr.psu.edu
AF: The Pennsylvania State University, Department of Electrical Engineering, University Park,
PA 16802, United States
AU: Kudeki, E
EM: erhan@uiuc.edu
AF: University of Illinois, Dept. of Electrical & Computer Engineering, Urbana, IL 61820, United
States
AB:
Although sporadic-E layers and quasi-periodic (QP) radars are typically detected during nighttime conditions at
mid-latitudes, they also may exist in the daytime lower ionosphere as well. We present observations of
ionosonde observations of daytime sporadic-E layers gathered at the Wallops Flight Facility, Virginia, in the late
morning to noon local times. The data reveal sporadic-E characteristics similar to nighttime observations
including considerable variations in frequency and altitude. For one event, observed on 23 July 1999 near 14 U.T.
(10 L.T.), we present coincident strong Wallops ionosonde sporadic-E observations and 50MHz backscatter
radar observations of quasi-periodic echoes gathered with the University of Illinois radar situated at Ft. Macon,
N.C., whose beam was perpendicular to the magnetic field in the lower E-region over Wallops. The radar data
show daytime QP structuring that is very similar to the nighttime observations, suggesting a similar driving
mechanism. A statistical survey of the daytime ionogram data at Wallops shows a preponderance of daytime
sporadic-E events occurring during the local summer months, a seasonal dependence that is well-established
for nighttime sporadic-E conditions in the northern hemisphere. No clear correlation is observed between the
daytime sporadic-E events and magnetic storms, suggesting that the daytime sporadic-E events are not
necessarily driven by the disturbance dynamo. Rather, we speculate that the same large wind shears that are
believed to be the main engine for the nighttime sporadic-E and QP echoes, may also be at work during the
daytime. The existence of enhanced plasma density layers during the daytime and their role in generating QP-
echoes during the day remain open questions.
DE: 2439 Ionospheric irregularities
DE: 2443 Midlatitude ionosphere
DE: 2471 Plasma waves and instabilities (2772)
SC: SPA-Aeronomy [SA]
MN: 2007 Fall Meeting