Hostname: page-component-84b7d79bbc-g78kv Total loading time: 0 Render date: 2024-07-25T14:00:46.215Z Has data issue: false hasContentIssue false

Slowly propagating instabilities in plasmas with Margenau-Davydov electron distribution function

Published online by Cambridge University Press:  13 March 2009

V. J. Žigman
Affiliation:
Institute of Physics, Faculty of Natural and Mathematical Sciences, Belgrade, Yugoslavia
B. S. Milić
Affiliation:
Institute of Physics, Faculty of Natural and Mathematical Sciences, Belgrade, Yugoslavia

Abstract

The properties of certain wave modes excited in a weakly ionized plasma placed in an external d.c. electric field are analyzed from the standpoint of the linearized kinetic equation, the electron steady-state distribution function being taken in the form of the extended Margenau–Davydov and, in particular, Druyvesteinian. The presence of absolute stability cones formed by certain propagation directions is found. The corresponding critical values of the electron drift, destabilizing each of the modes considered, is also evaluated for a plasma with a Druyvesteinian distribution.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1980

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

Ginzburg, V. L. 1960 Propagation of Electromagnetic Waves in Plasma. Nauka (in Russian).Google Scholar
Landau, L. D. & Lifshitz, E. M. 1963 Quantum Mechanics. Fizmatgiz (in Russian).Google Scholar
Margenau, H. & Hartman, L. M. 1948 Phys. Rev. 73, 309.CrossRefGoogle Scholar
Milić, B. S. & Ruhadze, A. A. 1968 Soviet J. Tech. Phys. 38, 229.Google Scholar
Milić, B. S. 1968 Fizika, 1, 59.Google Scholar
Stun, V. P. & Rueadze, A. A. 1961. Electromagnetic Properties of Plasma and Plasma- like Media. Gosatomizdat (in Russian).Google Scholar
Teubner, P. J. G., Buckman, S. J. & Noble, C. J. 1978 J. Phys. B: Atom. Molec. Phys. 11, 2345.CrossRefGoogle Scholar
Williams, J. F. & Crows, A. 1975 J. Phys. B: Atom Molec. Phys. 8, 2233.CrossRefGoogle Scholar
Žigman, V. J. & Milić, B. S. 1977 Contr. XIIIth ICPIG, Berlin, p. 777.Google Scholar