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Teplofizika vysokikh temperatur, 2006, Volume 44, Issue 2, Pages 165–173
(Mi tvt1301)
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This article is cited in 24 scientific papers (total in 24 papers)
Plasma Investigations
A self-consistent kinetic model of the effect of striation of low-pressure discharges in inert gases
G. I. Sukhinin, A. V. Fedoseev Institute of Thermophysics, Siberian Division of the Russian Academy of Sciences, Novosibirsk
Abstract:
A self-consistent kinetic model is used to treat the effect of striation of the positive column of gas discharge in low-pressure inert gases. The model is based on the solution of the kinetic Boltzmann equation for the electron energy distribution function, of the unsteady-state equation of drift and diffusion for ions, and of the Poisson equation for electric field. Spatial distributions of the electron and ion density are obtained, as well as of the electric field in the positive column of striated discharge. The model is used to explain the kinetic mechanism of origination of the effect of striation in low-pressure inert gases. The obtained distributions are independent of the initial conditions, and the solution gives a self-consistent "resonance" length of strata and the value and form of modulation of electric field.
Received: 10.03.2005
Citation:
G. I. Sukhinin, A. V. Fedoseev, “A self-consistent kinetic model of the effect of striation of low-pressure discharges in inert gases”, TVT, 44:2 (2006), 165–173; High Temperature, 44:2 (2006), 157–165
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https://www.mathnet.ru/eng/tvt1301 https://www.mathnet.ru/eng/tvt/v44/i2/p165
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