Abstract
We study the synchronization of oscillations in an active distributed system comprising a helical electron beam interacting with a backward wave in a waveguide (backward-wave cyclotron resonance maser). The characteristics of nonautonomous spatio-temporal oscillations in a system with different degrees of nonisochronism of oscillating electrons are examined. The physical processes accompanying the transition of a distributed self-oscillatory system to the synchronization mode are considered.
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