Ambipolar diffusion as a singular perturbation problem

Author:

Giles M. J.

Abstract

The effect of a magnetic field on the diffusion of a cylindrical column of ionization, having an initial electron density much greater than that of the ambient weakly ionized plasma in which it is embedded, is examined for the case in which the electron gyro-frequency is much greater than the electron neutral collision frequency Ve. The nonlinear diffusion equations are solved by means of a perturbation expansion based on their exact solution for the case Ve = 0. This approach leads to a singular perturbation problem, and shows that, when the column is not closely aligned with the field the distribution of plasma differs appreciably from that obtained from an ordinary anisotropic diffusion equation.

Publisher

Cambridge University Press (CUP)

Subject

Condensed Matter Physics

Reference8 articles.

1. Drift and diffusion of filament ion clouds in the earth's ionosphere

2. Kaiser T. R. 1967 Proc. IAU Symp. Phys. and Dynam. of Meteors, Tatranska Lomnica, Czechoslovakia.

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