DocumentCode :
1901166
Title :
Effects of plasma filling on microwave emission in a BWO with non-uniform slow wave structure
Author :
Young, D. ; Ishihara, O. ; Grabowski, C. ; Gahl, J. ; Schamiloglu, Edl
Author_Institution :
Texas Tech. Univ., Lubbock, TX, USA
fYear :
1997
fDate :
19-22 May 1997
Firstpage :
256
Abstract :
Summary form only given. In a backward wave oscillator (BWO), an electron beam flowing in a waveguide interacts with a ripple in the waveguide wall, known as a slow wave structure (SWS), to produce high power microwaves. The introduction of either a non-uniform ripple or plasma filling in the waveguide has been shown to increase the output power of the BWO. The effect of a non-uniform ripple and plasma filling is studied using the computer code MAGIC. For a BWO with a non-uniform SWS geometry similar to that used in experiments at UNM, the effects of plasma density, plasma radius, and the amount of plasma filling on microwave emission are being simulated. Preliminary results suggest that higher power is produced only with a plasma density less than the electron beam density. In addition, our MAGIC simulations are testing the prediction made by an analytical study which suggests that higher output power will be generated with a plasma concentrated within a small radius and an annular electron beam flowing at a larger radius close to the SWS ripples. The effects of the amount of plasma filling are also studied to determine if the presence of plasma beyond the SWS inhibits the production of high power microwaves in a plasma filled BWO.
Keywords :
backward wave oscillators; microwave generation; microwave oscillators; plasma devices; plasma filled waveguides; relativistic electron beam tubes; slow wave structures; BWO; MAGIC simulations; annular electron beam; backward wave oscillator; electron beam; high power microwaves; microwave emission; nonuniform slow wave structure; output power; plasma filled BWO; plasma filling; ripple; waveguide; waveguide wall; Computational modeling; Electron beams; Filling; Geometry; Microwave oscillators; Plasma density; Plasma simulation; Plasma waves; Power generation; Solid modeling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Science, 1997. IEEE Conference Record - Abstracts., 1997 IEEE International Conference on
Conference_Location :
San Diego, CA, USA
ISSN :
0730-9244
Print_ISBN :
0-7803-3990-8
Type :
conf
DOI :
10.1109/PLASMA.1997.605014
Filename :
605014
Link To Document :
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