DocumentCode :
227767
Title :
Power of microwave radiation of the relativistic electron beam with virtual cathode in the external magnetic field
Author :
Kurkin, S.A. ; Hramov, A.E. ; Koronovskii, Alexey A.
Author_Institution :
Saratov State Univ., Saratov, Russia
fYear :
2014
fDate :
25-29 May 2014
Firstpage :
1
Lastpage :
1
Abstract :
Summary form only given. The numerical study of the output power of electromagnetic radiation of the relativistic electron beam (REB) with virtual cathode (VC) in the presence of external transversal magnetic field has been found out with the help of 3D electromagnetic simulation. The model under study consists of the finite-length cylindrical waveguide region (electron beam drift chamber) with grid electrodes at both ends under the same potential and axially symmetrical monoenergetic overcritical REB [1] travelling through the drift chamber. The typical dependencies of the output microwave power of the REB with VC versus external magnetic field have been analyzed and explained in the vircator [1]. It has been shown that the output power of relativistic vircator demonstrates several maxima with external magnetic field growth. The azimuthal instability development under the influence of the beam self-magnetic fields leading to the vortex structure formation in the REB was discovered [2]. It was obtained that the electron beam demonstrates the formation of different vortex electron structures with the growth of the external magnetic field value, in particular, the single, double or triple vortices. Finally, the azimuthal instability is suppressed by the strong external magnetic fields. The azimuthal instability has a considerable influence on the REB critical current [2] and output radiation power of the system [3]. It was found out that the interaction efficiency of the VC in the REB with electromagnetic fields and, consequently, the output power are greater when the beam has no nonuniformities in the azimuthal direction. So, the value of the external magnetic field determined the shape of the formed electron vortex in the system and, hence, its uniformity in the azimuthal direction also determines the value of REB output power and the presence of the local maxima on the dependency of output power versus external magnetic field.
Keywords :
cathodes; circular waveguides; drift chambers; electromagnetic fields; electromagnetic waves; relativistic electron beams; vortices; 3D electromagnetic simulation; azimuthal instability development; beam self-magnetic fields; electromagnetic fields; electromagnetic radiation; electron beam drift chamber; electron vortex; finite-length cylindrical waveguide region; grid electrodes; microwave power; microwave radiation; monoenergetic overcritical REB; relativistic electron beam; relativistic vircator; transversal magnetic field; virtual cathode; vortex electron structures; vortex structure formation; Cathodes; Educational institutions; Electromagnetic radiation; Electron beams; Magnetic fields; Numerical models; Power generation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Sciences (ICOPS) held with 2014 IEEE International Conference on High-Power Particle Beams (BEAMS), 2014 IEEE 41st International Conference on
Conference_Location :
Washington, DC
Print_ISBN :
978-1-4799-2711-1
Type :
conf
DOI :
10.1109/PLASMA.2014.7012527
Filename :
7012527
Link To Document :
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