Title :
New results of the phase-coherent harmonic-multiplying inverted gyrotwystron
Author :
Guo, Hongyu ; Walter, Michael ; Rodgers, Jeremy ; Nusinovich, Gregory ; Zhao, Junhua ; Granatstein, V.L.
Author_Institution :
Inst. for Plasma Res., Maryland Univ., College Park, MD, USA
Abstract :
Summary form only given, as follows. A highly overmoded, Ka-band, phase-coherent, harmonic-multiplying, inverted, gyrotwystron (phigtron) experiment is described. The phigtron was composed of the following parts: a fundamental gyro-TWT as prebunching input section; a short buncher cavity (1.5/spl lambda/); and, a long output cavity (12/spl lambda/), with both cavities operating at the second harmonic of the electron cyclotron frequency. Phase locking, amplification and mode selection have been studied and compared with performance in a previous one-cavity phigtron. Enhanced amplifier efficiency of 25% and improved frequency response characteristics are obtained with the new two-cavity version, further demonstrating that the phigtron has the potential of becoming a high average power, millimeter wave generator with good efficiency, high gain, compact driver, and medium bandwidth for radar and other advanced applications.
Keywords :
gyrotrons; Ka-band; electron cyclotron frequency; enhanced amplifier efficiency; gyro-TWT; long output cavity; millimeter wave generator; one-cavity phigtron; phase locking; phase-coherent harmonic-multiplying inverted gyrotwystron; phigtron; prebunching input section; response characteristics; short buncher cavity; two-cavity version; Bandwidth; Character generation; Cyclotrons; Driver circuits; Electrons; Frequency response; High power amplifiers; Laser mode locking; Millimeter wave radar; Power generation;
Conference_Titel :
Plasma Science, 1998. 25th Anniversary. IEEE Conference Record - Abstracts. 1998 IEEE International on
Conference_Location :
Raleigh, NC, USA
Print_ISBN :
0-7803-4792-7
DOI :
10.1109/PLASMA.1998.677578