Title :
Space-charge and secondary emission effects in a computer simulation of crossed-field distributed-emission amplifiers
Author :
DeMassa, Thomas A. ; Rowe, J.E.
Author_Institution :
Arizona State University, Tempe, Ariz.
fDate :
2/1/1968 12:00:00 AM
Abstract :
A generalized steady-state nonlinear electron-wave interaction theory is developed for the crossed-field distributed-emission or emitting-sole amplifier. The system equations are non-linear integro-differential equations, developed from the one-dimensional equivalent transmission-line equation, the Lorentz force equation, the continuity equation, and Poisson´s equation. The effects of dc, RF and space-charge forces are taken into account, and secondary emission from the sole electrode is included in the theory. Digital computer solutions indicate a gain threshold with RF drive, and that the inclusion of space-charge forces and secondary emission enhances the gain. A linearly decreasing magnetic field near the output also increases the gain. Approximate solutions based on a hard-kernel-bunch (HKB) model are shown to give excellent agreement with the computer solutions.
Keywords :
Charge carrier processes; Computer simulation; Distributed amplifiers; Integrodifferential equations; Nonlinear equations; Poisson equations; Radio frequency; Radiofrequency amplifiers; Steady-state; Transmission lines;
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/T-ED.1968.16142