HR: 1330h
AN: SM12A-1206 [PDF]
TI: Plasma Density and Temperature Measurements in the Cusp Ionosphere
AU: * Steigies, C T
EM: christian.steigies@gsfc.nasa.gov
AF: NASA Goddard Space Flight Center, Code 696, Greenbelt, MD 20771 United States
AU: Pfaff, R F
EM: Robert.F.Pfaff@nasa.gov
AF: NASA Goddard Space Flight Center, Code 696, Greenbelt, MD 20771 United States
AU: Oksavik, K
AF: University of Oslo, Boks 1072 Blindern, Oslo, 0316
Norway
AU: Yeoman, T
AF: Leicester University, University Road, Leicester, LE1 7RH
United Kingdom
AU: Knudsen, D J
AF: University of Calgary, 2500 University Drive N.S., Calgary, T2N-1N4
Canada
AU: Burchill, J K
AF: University of Calgary, 2500 University Drive N.S., Calgary, T2N-1N4
Canada
AB:
A Black Brant X sounding rocket (NASA 35.033) was launched
on December 14th, 2002 at 11:16:48~UTC
from Ny {\AA}lesund, Norway
to study the electrodynamics of the cusp ionosphere and the
open/closed field line boundary region.
The launch was coordinated with satellite measurements and with optical and
radar ground-based observations.
The rocket was launched during $Bz$ southward conditions and reached an
apogee of 771\,km, well above the $F$-layer peak.
Measurements by a fixed-bias (ion) Langmuir probe and a swept Langmuir
probe on the rocket payload provide plasma density,
density fluctuations, and electron temperature,
as well as the plasma potential.
The swept Langmuir probe used
a 2.5\,cm diameter titanium nitride coated spherical electrode
whereas the fixed bias probe used a 10\,cm diameter,
6.4\, mm thick ring as the active element.
On the upleg of the rocket trajectory,
a very disturbed ionosphere was encountered,
with large amplitude ($>$20%),
large scale (typically 10\,m-10\,km) irregularities
superimposed on the background,
indicative of the open magnetic field line cusp environment.
By contrast, the downleg profile shows a smooth density profile
without irregularities that is consistent with the dayside ionosphere on
closed magnetic field lines.
Elevated electron temperatures were observed coincident
with regions of energetic precipitations.
These may have been due to instrumental effects, however,
and a detailed analysis is still underway.
We compare both the density and temperature measurements gathered with the rocket instruments with those measurements
simultaneously gathered with the EISCAT radar, and with temperatures derived from the Calgary Suprathermal Ion Imager, that
was also part of the rocket payload.
DE: 2704 Auroral phenomena (2407)
DE: 2724 Magnetopause, cusp, and boundary layers
SC: SPA - Magnetospheric Physics [SM]
MN: 2003 Fall Meeting