HR: 0800h
AN: SA21A-0289 [Abstracts]
TI: Ring Current Asymmetry as Observed by Ground Magnetometers, In Situ, and Space-based Remote Sensing
Data
AU: * Cramer, W D
EM: wcramer@fit.edu
AF: Florida Inst Technology, Physics & Space Sciences
150 W University Blvd, Melbourne, FL 32901-6975
United States
AU: Turner, N E
EM: neturner@fit.edu
AF: Florida Inst Technology, Physics & Space Sciences
150 W University Blvd, Melbourne, FL 32901-6975
United States
AU: Brandt, P C
EM: pontus.brandt@jhuapl.edu
AF: Johns Hopkins Univ, Applied Physics Lab
11100 Johns Hopkins Rd, Laurel, MD 20723-6099
United States
AU: Mitchell, D G
EM: don.mitchell@jhuapl.edu
AF: Johns Hopkins Univ, MP3-E132
11100 Johns Hopkins Rd, Laurel, MD 20723-6099
United States
AB:
During enhanced geomagnetic activity, the ring current is well-known to exhibit a strongly asymmetric structure. Some storm
models predict a rapid change to symmetric ring current in early recovery, but this is not always what is seen. In
particular, many use the ASY index to characterize the inner magnetospheric ring current morphology, as it is widely
available and continuous, though it is not clear how well it represents what is actually occurring in the inner
magnetosphere. The increased availability of in situ and remote sensing measurements from instruments on spacecraft such as
POLAR and IMAGE, has given physicists the opportunity to re-evaulate the meaning and usefulness of such indices and gain a
better understanding of the ring current morphology. The asymmetric index (ASY), in particular, is analyzed to evaluate its
usefulness in parameterizing the asymmetry of the storm-time ring current. Data used for this evaluation include POLAR
CAMMICE and LANL in situ data and IMAGE HENA data. We analyze the ring current morphology in storm times and discuss whether
ASY provides a useful characterization.
DE: 2778 Ring current
SC: SPA-Aeronomy [SA]
MN: Fall Meeting 2005