Title :
Radio frequency priming of a long-pulse relativistic magnetron
Author :
White, William M. ; Gilgenbach, Ronald M. ; Jones, Michael C. ; Neculaes, V. Bogdan ; Lau, Yue Ying ; Pengvanich, P. ; Jordan, Nicholas M C ; Hoff, Brad W. ; Edgar, Ryan ; Spencer, Thomas A. ; Price, David
Author_Institution :
Sandia Nat. Labs., Albuquerque, NM
fDate :
6/1/2006 12:00:00 AM
Abstract :
Rapid startup, increased pulsewidth, and mode locking of magnetrons have been explored experimentally on a relativistic magnetron by radio frequency (RF) priming. Experiments utilize a -300 kV, 2-8 kA, 300-500-ns electron beam to drive a Titan six-vane relativistic magnetron (5-100 MW output power in each of the three waveguides). The RF priming source is a 100-kW pulsed magnetron operating at 1.27-1.32 GHz. Tuning stubs are utilized in the Titan structure to adjust the frequency of the relativistic magnetron to match that of the priming source. Experiments are performed on rising sun as well as standard anode configurations. Magnetron start-oscillation time, pulsewidth, and pi-mode locking are compared with RF priming versus the unprimed case. The results show significant reductions in microwave output delay and mode competition even when Adler´s Relation is not satisfied
Keywords :
electron beams; magnetrons; microwave generation; mode matching; waveguides; -300 kV; 1.27 to 1.32 GHz; 2 to 8 kA; 300 to 500 ns; 5 to 100 MW; Adler relation; Titan structure; anode; electron beam; microwave output delay; mode competition; pi-mode locking; pulsewidth; radiofrequency priming; relativistic magnetron; start-oscillation time; tuning stubs; waveguides; Anodes; Electron beams; Laboratories; Laser mode locking; Microwave oscillators; Microwave ovens; Power generation; Radio frequency; Space vector pulse width modulation; Switches; High-power microwaves; magnetrons; priming; pulse shortening;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2006.875829