DocumentCode
1209917
Title
Theoretical and experimental studies of virtual cathode microwave devices
Author
Alyokhin, B.V. ; Dubinov, A.E. ; Selemir, V.D. ; Shamro, O.A. ; Shibalko, K.V. ; Stepanov, N.V. ; Vatrunin, V.E.
Author_Institution
Nucl. Center, Scientific Res. Inst. of Exp. Phys., Arzamas, Russia
Volume
22
Issue
5
fYear
1994
fDate
10/1/1994 12:00:00 AM
Firstpage
945
Lastpage
959
Abstract
The results of theoretical and experimental studies of microwave devices with virtual cathodes (VC´s) are reviewed. It is shown that the basic factors affecting operation efficiency of these devices are phase separation of electron flux, diode impedance matching with the high-voltage transmission line, and the availability of two characteristic features in the output spectrum. Using nonlinear theory, we have observed the evolution of the electron velocity distribution function in the vicinity of the VC, have found the VC effective temperature, and have studied the fractal indices for various functions in time. This report also describes a series of experiments where 2-D features of the electron dynamics in the vircator are rather important, and 11% generation efficiency with a pinch-vircator was achieved. The understanding of the physical processes occurring in VC microwave devices gained in this work supports the proposal of several new highly efficient concepts for such devices
Keywords
cathodes; microwave generation; vircators; 2D features; VC microwave devices; diode impedance matching; electron dynamics; electron flux; electron velocity distribution function; fractal indices; generation efficiency; high-voltage transmission line; microwave devices; nonlinear theory; operation efficiency; output spectrum; pinch-vircator; vircator; virtual cathodes; Availability; Cathodes; Diodes; Distribution functions; Electrons; Impedance matching; Microwave devices; Temperature distribution; Transmission line theory; Virtual colonoscopy;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/27.338312
Filename
338312
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