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Electron Kinetics in the Cathode Region of a Glow Discharge and in Hollow Cathodes

✍ Scribed by H.-B. Valentini


Publisher
John Wiley and Sons
Year
1987
Tongue
English
Weight
737 KB
Volume
27
Category
Article
ISSN
0005-8025

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✦ Synopsis


On the basis of an improved cascade model a multi-group theory for studying the electron kinetics in the cathode region of a glow discharge and in hollow cathodes is developed. The secondary electrons newly created by ionization are taken into account. The electrons are divided in groups with respect to the interval where they were created or where they made an inelastic collision. The inelastic collisions and the forward scattering are assumed to dominate. The mean energies of two neighbouring groups are taken to be different by the ionization energy or by parts of it. For the flux densities of the various electron groups a set of ordinary first order differential equations and corresponding boundary conditions are obtained and solved for He. These formulae are valid for m y electric potentials. The results relatively well agree with those of Monte Carlo simulations. The first Townsend ionization coefficient differs substantially from that resulting from the Townsend formula. The velocity distribution function spatially varies and contains several groups of fast electrons. Using the detour fctctor the angular scattering can be included in the calculations.


πŸ“œ SIMILAR VOLUMES


Electron Energy Distribution and Optical
✍ L. E. Khvorostovskaya; I. Yu. Potekhin; S. N. Khvorostovsky πŸ“‚ Article πŸ“… 1991 πŸ› John Wiley and Sons 🌐 English βš– 643 KB

A model is proposed for the formation of the electron energy distribution in a hollow cathode discharge. On the basis of this model, an integral equation has been derived to calculate the electron distribution function over the entire cathode cavity volume. The equation holds true for both the isotr