HR: 12:05h
AN: U52A-10 INVITED [Abstracts]
TI: Multiscale Dynamics of the Magnetosphere
AU: * Sharma, A
EM: ssh@astro.umd.edu
AF: Department of Astronomy, University of Maryland, College Park, MD 20817, United States
AU: Chen, J
EM: chenjian@astro.umd.edu
AF: Department of Astronomy, University of Maryland, College Park, MD 20817, United States
AU: Veeramani, T
EM: tmani@umd.edu
AF: Department of Electrical and Computer Engineering, University of Maryland, College Park,
MD 20742, United States
AB:
The dynamics of the magnetosphere is driven by the turbulent solar wind, and exhibits complex behavior with
global, regional and local features. The global features are in general captured by the geomagnetic indices and
the regional and local features are measured by spacecraft-based imagers and ground-based instruments. The
global dynamical behavior has been studied extensively using nonlinear dynamical techniques. However the
presence of a wide range of scales limits the ability of these techniques and a mean-field approach is used to
obtain a deterministic model. This description is further improved by introducing a weighted averaging, with the
weights determined by the distribution of sates in the reconstructed phase space. The multiscale aspects can not
be described within a deterministic framework and a Bayesian approach is used to compute the conditional
probabilities from the correlated solar wind - magnetosphere data. The regional features of the dynamics is
studied using the mutual information functions computed from the magnetic field data from the high latitude
magnetometer stations. The spreads in the average mutual information show a good correlation with the solar
wind convective electric field and sudden changes in the dynamic pressure. The distribution of scales in the
magnetosphere is studied using an extensive database. The distributions of the waiting times deviate
significantly from a power law as well as stretched exponential distributions, and show a scaling with respect to
the mean, indicating a limited role of long-term correlations in the magnetospheric dynamics.
DE: 2784 Solar wind/magnetosphere interactions
DE: 3245 Probabilistic forecasting (3238)
DE: 4430 Complex systems
DE: 4468 Probability distributions, heavy and fat-tailed (3265)
DE: 4475 Scaling: spatial and temporal (1872, 3270, 4277)
SC: Union [U]
MN: 2007 Fall Meeting