Title :
Dispersion Relation of TM Mode Electromagnetic Waves in the Rippled-Wall Elliptical Plasma and Dielectric Waveguide in Presence of Elliptical Annular Electron Beam
Author :
Abdoli-Arani, Abbas
Author_Institution :
Dept. of Laser & Photonics, Univ. of Kashan, Kashan, Iran
Abstract :
The dispersion relation of electromagnetic waves in a rippled-wall elliptical waveguide with a degenerate plasma column protected by an elliptical annular dielectric layer is theoretically investigated. Using the linear field theory, the dispersion relation of electromagnetic waves in a rippled-wall elliptical waveguide with a plasma rod and an elliptical annular dielectric is obtained. In addition, by injecting a finite thick annular intense relativistic electron beam in this waveguide, the dispersion relation of these waves is investigated. In addition, a cold and uniform plasma-filled traveling wave tube with sinusoidally corrugated slow-wave structure is driven by a finite thick elliptical annular intense relativistic electron beam with the entire system immersed in a strong longitudinal magnetic field. Using the linear field theory, the dispersion relation for the elliptical relativistic traveling wave tube is derived.
Keywords :
dielectric waveguides; dispersion relations; plasma electromagnetic wave propagation; plasma filled waveguides; plasma kinetic theory; plasma-beam interactions; plasma-wall interactions; relativistic plasmas; slow wave structures; TM mode electromagnetic waves; corrugated slow-wave structure; degenerate plasma column; dielectric waveguide; dispersion relation; elliptical annular dielectric layer; elliptical annular electron beam; finite thick elliptical annular intense relativistic electron beam; linear field theory; longitudinal magnetic field; plasma rod; plasma-filled traveling wave tube; rippled-wall elliptical plasma waveguide; Dielectrics; Dispersion; Electromagnetic scattering; Electromagnetic waveguides; Electron beams; Equations; Plasmas; Dispersion relation; elliptical annular electron beam; elliptical plasma waveguide; slow-wave structure;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2013.2275734