DocumentCode :
1402094
Title :
Electron gun and collector design for 94-GHz gyro-amplifiers
Author :
Nguyen, Khanh T. ; Danly, Bruce G. ; Levush, Baruch ; Blank, Monica ; True, Richard ; Good, Gwen R. ; Hargreaves, Thomas A. ; Felch, Kevin ; Borchard, Philipp
Author_Institution :
KN Res., Silver Spring, MD, USA
Volume :
26
Issue :
3
fYear :
1998
fDate :
6/1/1998 12:00:00 AM
Firstpage :
799
Lastpage :
813
Abstract :
This paper presents the electrical design of a magnetron injection gun and collector for high peak and average power TE01 W-band gyro-amplifiers. The magnetron injection gun design employs an optimized double-anode geometry and a cathode angle of 500 to achieve superior beam optics that are relatively insensitive to electrode misalignments and field errors. A transverse relative velocity spread of 1.6% at a velocity ratio of 1.5 is obtained in simulations for a 6-A 65-kV beam. Cathode edge emission was modeled, found to produce a major effect on velocity spread, and will be eliminated by nonemissive cylinders affixed to the cathode. The collector, which also serves as the output waveguide, is designed to minimize the required collector length while avoiding excessive power loading on the collector surface. An average power density of less than 640 W/cm2 on a 3.25-cm-diameter collector is achieved for 91-kW average beam power. Both the gun and collector are currently under construction
Keywords :
electron guns; gyrotrons; magnetrons; millimetre wave power amplifiers; 6 A; 65 kV; 91 kW; 94 GHz; W-band; average power density; beam optics; cathode edge emission; collector design; electrode misalignments; electron gun; field errors; gyro-amplifiers; magnetron injection gun; nonemissive cylinders; optimized double-anode geometry; output waveguide; transverse relative velocity spread; Cathodes; Design optimization; Electrodes; Electrons; Geometrical optics; Optical beams; Optical design; Stimulated emission; Structural beams; Tellurium;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/27.700837
Filename :
700837
Link To Document :
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