Optimization of powerful relativistic Cherenkov oscillators
Alexandr A. Kurayev, T.L. Popkova, Anatoly Konstantinovich Sinitsyn, Aleksandr Borisovich Zakalyukin
Abstract
Alexandr A. Kurayev, T.L. Popkova, Anatoly Konstantinovich Sinitsyn, Aleksandr Borisovich Zakalyukin
Abstract
Uses a general theory of interaction of a relativistic electron beam (REB) with a field of modes E/sub 01/ of an irregular waveguide. On the basis of this theory we obtain the one-dimensional self-consistent nonlinear equations of relativistic Cherenkov oscillators: reflecting travelling wave tubes (RTWT) and backward-wave oscillators (BWO). Then by partly optimizing parameters and profiles of regular or irregular corrugated waveguides the high-efficiency variants of oscillators are found.
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Uses a general theory of interaction of a relativistic electron beam (REB) with a field of modes E/sub 01/ of an irregular waveguide. On the basis of this theory we obtain the one-dimensional self-consistent nonlinear equations of relativistic Cherenkov oscillators: reflecting travelling wave tubes (RTWT) and backward-wave oscillators (BWO). Then by partly optimizing parameters and profiles of regular or irregular corrugated waveguides the high-efficiency variants of oscillators are found.
Key concepts: Cherenkov radiation, Physics, Relativistic electron beam, Waveguide, Nonlinear system, Electron, Field (mathematics), Beam (structure)