Title :
Resistive Electrostatic Ion Cyclotron Instability in Plasmas
Author :
Lee, Kai Fong ; Luhmann, N.C., Jr.
Author_Institution :
Department of Electronics the Chinese University of Hong Kong Shatin, N. T., Hong Kong
fDate :
3/1/1976 12:00:00 AM
Abstract :
The stability of electrostatic ion cyclotron waves propagating obliquely with respect to the background magnetic field is studied for collisional, fully-ionized plasmas in which there is a relative field-aligned streaming between electrons and ions. It is found that electron-ion collisions, in conjunction with electron streaming, provides a mechanism for instability. The role of electron streaming is to supply a source of free energy and the role of electron-ion collisions is to restrict the field-aligned mobility of the electrons, thus preventing them from establishing a Boltzmann equilibrium. Ion-ion collisions and finite ion Larmor radius are found to exert a stabilizing influence. The instability is analyzed for both current-carrying plasmas and counterstreaming-beam-plasma systems.
Keywords :
Cyclotrons; Electron mobility; Electrostatics; Equations; Frequency; Plasma devices; Plasma sources; Plasma stability; Plasma waves; Thermal conductivity;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.1976.4316929