DocumentCode
2523391
Title
A new approach for the theory on electron beam-wave interactions
Author
Liu Shenggang ; Wei, Y.Y. ; Yan Yang ; Barker, R.J.
Author_Institution
UESTC, China
fYear
2002
fDate
26-26 Sept. 2002
Firstpage
105
Lastpage
106
Abstract
A new approach to the theoretical study of the electron beam-wave interaction in arbitrary RF structures is presented in this paper. In any such interaction system, there are two coordinate systems: the lab system; the rest coordinate system for the plasma, if it exists; and the moving coordinate system for the electron beam. Both the electron beam and the plasma are considered special media with different characteristics. The permittivity tensor and the permeability tensor can be found in the moving coordinate system for the beam while that for the plasma can be found in the lab coordinate system. Then, making use of the transformation of electromagnetic fields in Minkovski space and the Lorentz transformation of the 4D wave vectors, all the physics quantities in the moving coordinate system can be transferred into the lab coordinate system. Then the Maxwell´s equations with the transferred constitutive tensors should be used to derive the desired dispersion equation. This new approach is a very efficient and accurate method for the study of electron beam-wave interactions.
Keywords
Lorentz transformation; Maxwell equations; dispersion relations; electromagnetic field theory; electron beams; magnetic permeability; permittivity; plasma filled waveguides; plasma interactions; 4D wave vector Lorentz transformations; Minkovski space EM field transformations; arbitrary RF structures; dispersion equations; e-beam-wave interaction; electron beam moving coordinate system; electron beam-wave interactions; lab coordinate system; permeability tensors; permittivity tensors; plasma rest coordinate system; transferred constitutive tensor Maxwell equations; Electromagnetic fields; Electron beams; Maxwell equations; Particle beams; Permeability; Permittivity; Plasma properties; Plasma waves; Radio frequency; Tensile stress;
fLanguage
English
Publisher
ieee
Conference_Titel
Infrared and Millimeter Waves, 2002. Conference Digest. Twenty Seventh International Conference on
Conference_Location
San Diego, CA, USA
Print_ISBN
0-7803-7423-1
Type
conf
DOI
10.1109/ICIMW.2002.1076106
Filename
1076106
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