Paper
3 October 1997 Nonlinear electron-wave excitation in microwave Cherenkov's devices
Viktor M. Pikunov, Igor A. Chernyavskiy
Author Affiliations +
Abstract
This paper is dedicated to the investigation of electromagnetic fields composition of an electron beam propagating through different electrodynamics superdimensional structures--the drift tube, the corrugate waveguide, the waveguide partially filled by a dielectric. Excitation equations for radiation and wake fields are written in a matrix form. The directed orthogonalization algorithm with semiinversion may be used to solving that matrix equations. The example of a finite-dimensional electron ring-bunch which moving through the superdimensional drift tube and the waveguide filled by a dielectric is discussed. The energy stored in different parts of the electromagnetic field is calculated. Pictures of lines of force, longitudinal and radial distributions of electromagnetic fields components are presented.
© (1997) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Viktor M. Pikunov and Igor A. Chernyavskiy "Nonlinear electron-wave excitation in microwave Cherenkov's devices", Proc. SPIE 3158, Intense Microwave Pulses V, (3 October 1997); https://doi.org/10.1117/12.279437
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KEYWORDS
Electron beams

Particles

Waveguides

Electromagnetism

Microwave radiation

Magnetism

Dielectrics

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