Demonstration of a high-power long-pulse 140-GHz gyrotron oscillator

A high-power long-pulse 140-GHz gyrotron oscillator has been designed, constructed, and tested. Key features of the gyrotron include an internal converter to transform the TE/sub 28,7,1/ operating mode to a Gaussian output beam, a single-stage-depressed collector, and a chemical-vapor-deposition dia...

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Veröffentlicht in:IEEE transactions on plasma science 2004-06, Vol.32 (3), p.867-876
Hauptverfasser: Blank, M., Felch, K., Borchard, P., Cahalan, P., Cauffman, S.R., Tak Sum Chu, Jory, H.
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Sprache:eng
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Zusammenfassung:A high-power long-pulse 140-GHz gyrotron oscillator has been designed, constructed, and tested. Key features of the gyrotron include an internal converter to transform the TE/sub 28,7,1/ operating mode to a Gaussian output beam, a single-stage-depressed collector, and a chemical-vapor-deposition diamond output window. Peak output powers up to 930 kW at 34% efficiency have been demonstrated at 5-ms pulse lengths. Due to power supply limitations, long-pulse operation was not possible for beam currents above 25 A. At 25-A beam current and 500-kW output power, pulse lengths up to 700 s in duration were achieved. The gyrotron has been shipped to the Wendelstein 7-X facility in Greifswald, Germany, where long-pulse demonstrations up to 180s will be carried out at the 930-kW power level.
ISSN:0093-3813
1939-9375
DOI:10.1109/TPS.2004.828815