DocumentCode :
2335929
Title :
Phase-locking of multiple relativistic magnetrons
Author :
Levine ; Benford, J. ; Cooksey ; Harteneck ; Smith, R.R. ; Sze, Henry
Author_Institution :
Phys. Int. Co., San Leandro, CA, USA
fYear :
1989
fDate :
0-0 1989
Firstpage :
122
Abstract :
Summary Form only given, as follows. The authors are developing the technique of phase-locking high-power relativistic magnetrons to obtain very high-power microwave pulses (tens to hundreds of gigawatts at several gigahertz). In experiments conducted with two magnetrons connected by a waveguide bridge, phase-locking occurred within approximately=5 ns and was maintained for the duration of the microwave pulse. Peak power was 3 GW at 2.8 GHz ( pi mode operation of the magnetrons). A theoretical model based on the van der Pol equation predicts a 180 degrees phase difference between magnetrons, as observed in the experiment. The experimental and theoretical techniques developed in the two-magnetron experiment are being used to design a seven-magnetron module, energized by a single pulsed-power driver. The interconnection scheme will be flexible, allowing several different geometries to be tested. Issues relevant to arrays of multiple modules are also being studied.<>
Keywords :
magnetrons; microwave generation; relativistic electron beam tubes; 2.8 GHz; 3 GW; high-power microwave pulses; high-power relativistic magnetrons; multiple relativistic magnetrons; phase-locking; pulsed-power driver; seven-magnetron module; van der Pol equation; waveguide bridge; Magnetrons; Microwave generation; Relativistic effects;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Science, 1989. IEEE Conference Record - Abstracts., 1989 IEEE International Conference on
Conference_Location :
Buffalo, NY, USA
Type :
conf
DOI :
10.1109/PLASMA.1989.166184
Filename :
166184
Link To Document :
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