Early time striation structuring in ionized barium clouds due to the presence of BaO flow

Physics

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Barium Ion Clouds, Ionospheric Disturbances, Molecular Flow, Plasma Clouds, Striation, Barium Oxides, Bessel Functions, Computerized Simulation, Conservation Equations, Mathematical Models, Perturbation Theory

Scientific paper

Model calculations are carried out for the interaction of a diffusing BaO cloud with an infinite conductivity Ba(+) plasma cloud. The calculations show that the large wavelength perturbations are preferentially driven values of the ionized cloud radius, neutral cloud Gaussian radius, and the separation between the ionized cloud center and the neutral cloud center. The effect of BaO molecular flow on the early-time perturbation amplitudes is evaluated, and situations are found in which the large-wavelength perturbations are preferentially driven. The theoretical model and the numerical results are found to be in general agreement with observations of a 144-km Ba cloud released in the Secede test program.

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