DocumentCode :
1955136
Title :
HF electric field effect on Buneman´s instability in a relativistic plasma waveguide
Author :
El-Shorbagy, Kh H.
Author_Institution :
Plasma Phys. & Nucl. Fusion Dept., Nucl. Res. Centre, Cairo, Egypt
fYear :
2000
fDate :
2000
Abstract :
The stabilizing effect of a strong HF (pump) electrical field on the Buneman instability in a plane relativistic plasma waveguide is investigated. A new mathematical technique, the separation method, is applied to the two-fluid plasma model to separate the equations, which describe the system, into two parts: temporal and space parts. The temporal (dynamical) part enables us to determine the frequencies and growth rates of unstable modes; this part within the redefinition of natural frequencies coincides with the system describing HF suppression of the Buneman instability in a uniform unbounded plasma. Natural frequencies of oscillations and spatial distribution of the amplitude of the self-consistent electrical field are determined from the solution of a boundary-value problem (space part) taking into account the specific spatial distribution of plasma density. Plasma electrons are considered to have a relativistic velocity. It is shown that the growth rate instability in the relativistic plasma has been reduced compared to the nonrelativistic plasma. Also, it is found that the relativistic plasma electrons have not affected the solution of the space part of the problem
Keywords :
boundary-value problems; plasma density; plasma filled waveguides; plasma instability; plasma interactions; plasma oscillations; relativistic plasmas; waveguide theory; Buneman instability; HF electric field effect; HF suppression; boundary-value problem; frequencies; growth rate; growth rate instability; natural frequencies; nonrelativistic plasma; oscillations; plasma density; plasma electrons; relativistic plasma waveguide; relativistic velocity; self-consistent electrical field; separation method; space part; spatial distribution; stabilizing effect; temporal part; two-fluid plasma model; uniform unbounded plasma; unstable modes; Electromagnetic wave absorption; Electromagnetic waveguides; Electrons; Frequency; Hafnium; Planar waveguides; Plasma density; Plasma properties; Plasma waves; Poisson equations;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radio Science Conference, 2000. 17th NRSC '2000. Seventeenth National
Conference_Location :
Minufiya
Print_ISBN :
977-5031-64-8
Type :
conf
DOI :
10.1109/NRSC.2000.838973
Filename :
838973
Link To Document :
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