DocumentCode
1136740
Title
The Design of Space-Charge Limited Magnetron Injection Guns With Control Electrodes for Gyroklystron Applications
Author
Raghunathan, Harini ; Lawson, Wes
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Maryland, College Park, MD, USA
Volume
33
Issue
4
fYear
2005
Firstpage
1366
Lastpage
1371
Abstract
Temperature-limited (TL) magnetron injection guns (MIGs) suffer from nonuniform current density distributions due to thermal and work-function variations. A preliminary design of a space-charge-limited (SCL) MIG which could overcome this disadvantage was presented earlier. The design indicated that comparable beam quality as the TL MIG could be achieved, but with a slight cost of increased peak electric fields and cathode loading densities. One disadvantage of the SCL design is that the ability to control the beam current by varying the cathode temperature is lost. In this paper, we present two designs that use nonintercepting control electrodes to address this issue. Both designs have been developed with the basic goal of achieving a 500-kV, 500-A beam for the gyroklystron experiment in our laboratory. The first design has small electrodes that can be adjusted by
of the main beam voltage to adjust the current by
. The second design has larger control electrodes that can be biased sufficiently to cut off the beam flow even when the full beam voltage is applied. The design details and parametric studies are presented.
of the main beam voltage to adjust the current by
. The second design has larger control electrodes that can be biased sufficiently to cut off the beam flow even when the full beam voltage is applied. The design details and parametric studies are presented.Keywords
cathodes; electron guns; gyrotrons; klystrons; magnetrons; 500 A; 500 kV; beam current control; beam flow; cathode loading densities; control electrodes; gyroklystron; nonuniform current density distributions; space-charge limited magnetron injection guns; thermal variations; work-function variations; Cathodes; Costs; Current density; Electrodes; Guns; Klystrons; Laboratories; Parametric study; Temperature control; Voltage control; Electron gun; gyroklystron; magnetron injection gun; microwaves; space-charge limit;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2005.851953
Filename
1495585
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