Geophysical Plasmas and Atmospheric Modeling.
SCIENCE APPLICATIONS INC MCLEAN VA
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In the following subsections we will describe the major accomplishments in each of the following research efforts A magnetospheric computer simulation, B non-linear saturation and transport via the lower hybrid drift instability, C the current driven ion cyclotron instability, D tearing-mode stability properties of an anisotropic plasma layer, E analyses of high latitude irregularity phenomena, F auroral plasma transport, G the EXB instability, H the morphology of a multi-bubble system in the ionosphere, I double layer simulations, J anomalous resistivity of auroral electrons, K energy exchange in the Io plasma torus, L uranium cloud modeling, M NRL LaserHANE experiment support, N fractal theory applied to striating ionospheric plasma clouds, O elfvlf wave generation, P ozone transport in the lower atmosphere and, Q stratospheric dynamics.
- Atmospheric Physics