DocumentCode :
1209882
Title :
High-harmonic slotted gyroklystron amplifier: linear theory and nonlinear simulation
Author :
McDermott, D.B. ; Chong, C.K. ; Luhmann, N.C., Jr. ; Chu, K.R. ; Dialetis, D.
Author_Institution :
Dept. of Appl. Sci., California Univ., Davis, CA, USA
Volume :
22
Issue :
5
fYear :
1994
fDate :
10/1/1994 12:00:00 AM
Firstpage :
920
Lastpage :
931
Abstract :
A fluid theory and two self-consistent particle-tracing simulation codes are described for designing low voltage, sth-harmonic slotted gyroklystron amplifiers, in which axis-encircling electron beams are in resonance with the sth-order azimuthal modes of a series of magnetron-type cavities, allowing the gyrotron amplifier´s required magnetic field to be reduced by a factor of s. The linear fluid theory yields a convenient closed-form expression for gain and the nonlinear simulation code determines the large-signal device performance, while the much faster linear simulation code allows thorough, multi-dimensional parameter searches to be performed quickly. The simulation codes self-consistently account for shifts of the cavity´s resonant frequency and quality factor due to beam loading. The three theoretical approaches, which agree in the small-signal regime for weak beam loading, were used to design a 95 GHz, three-cavity, slotted twelve-vane, sixth-harmonic gyroklystron amplifier utilizing a 70 kV, 10 A, v/vz=2, axis-encircling beam and a 6.1 kG magnet. The nonlinear self-consistent simulation code predicts that the sixth-harmonic gyrotron amplifier with an ideal beam will yield an electronic efficiency of 20% and a saturated gain of 37 dB, while the more realistic device with a 10% axial velocity spread will generate a peak output power of 84 kW with 12% efficiency, a saturated gain of 27 dB and a 0.2% constant-drive bandwidth
Keywords :
gyrotrons; klystrons; millimetre wave amplifiers; 10 A; 12 percent; 20 percent; 37 dB; 6.1 kG; 70 kV; 84 kW; 95 GHz; axis-encircling electron beams; closed-form expression; gain; large-signal device performance; linear theory; magnetron-type cavities; multi-dimensional parameter; nonlinear self-consistent simulation code; nonlinear simulation; peak output power; saturated gain; self-consistent particle-tracing simulation codes; sixth-harmonic gyrotron amplifier; slotted gyroklystron amplifiers; Electron beams; Gain; Gyrotrons; Klystrons; Low voltage; Magnetic liquids; Magnetic resonance; Power amplifiers; Power generation; Saturation magnetization;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/27.338309
Filename :
338309
Link To Document :
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