Title :
Linear theory of the multi-stage Gyro-TWT
Author :
Nusinovich, Gregory ; Walter, Michael
Author_Institution :
IPR, Maryland Univ., College Park, MD, USA
Abstract :
Summary form only given. The Gyro-TWT is a promising candidate for applications requiring high power mm wave amplifiers with large bandwidth. Single stage devices are limited in their operation by backward wave instabilities. Multistage gyro-TWTs may be used to reduce interaction lengths of each section below minimum startup requirements for the parasitic backward wave. Such a two stage device is comprised of an input section, a cutoff drift region, and an output section. However, analysis of such devices is complicated because of a large number of free parameters involved. We have developed the formalism for operation of the multi-stage gyro-TWT amplifier in the linear regime. Such operation can be characterized by the normalized length, detuning, and electron beam current. Two distinct operating conditions are examined. The first is operation near cutoff, while the second is operation far from cutoff. Results of gain and bandwidth calculations will be presented for both near and far from cutoff operation for a two stage gyro-TWT at arbitrary detunings of the input and output sections.
Keywords :
gyrotrons; millimetre wave power amplifiers; plasma devices; relativistic electron beam tubes; travelling wave amplifiers; travelling wave tubes; cutoff drift region; electron beam current; far from cutoff operation; high power mm wave amplifiers; input section; interaction lengths; large bandwidth; linear regime; multistage gyro-TWT; multistage gyro-TWT amplifier; near cutoff operation; output section; parasitic backward wave; two stage device; Bandwidth; Electron beams; Intellectual property; Operational amplifiers;
Conference_Titel :
Plasma Science, 1999. ICOPS '99. IEEE Conference Record - Abstracts. 1999 IEEE International Conference on
Conference_Location :
Monterey, CA, USA
Print_ISBN :
0-7803-5224-6
DOI :
10.1109/PLASMA.1999.829534