Title :
Wave propagation characteristics in anisotropically conducting dielectric loaded tape helix slow wave structures
Author :
Babu, G. Naveen ; Stanislaus, Richards Joe ; Joshi, S.
Author_Institution :
Dept. of Electr. Eng., Shiv Nadar Univ., Noida, India
Abstract :
The practically important case of dielectric loaded tape helix enclosed in a perfectly conducting coaxial conductor is analysed in this paper. The dispersion equation for the infinitesimally thin and anisotropically conducting tape is derived from an exact solution of a homogeneous boundary value problem for Maxwell´s equation. The boundary value problem is solved to yield the dispersion equation which takes the form of the solvability condition viz., the determinant of the infinite-order coefficient matrix is zero. For the numerical computation of the approximate dispersion characteristics, all the entries of the symmetrically truncated version of the coefficient matrix are estimated by summing an adequate number of the rapidly converging series for them. The numerical computation of dispersion characteristics and phase speed variations for different values of b/a (outer conductor to inner helix radius) and effective dielectric permittivity is presented.
Keywords :
Maxwell equations; boundary-value problems; disperse systems; electromagnetic wave propagation; matrix algebra; slow wave structures; Maxwell´s equation; anisotropically conducting tape; approximate dispersion characteristics; dielectric loaded tape helix; dielectric permittivity; dispersion equation; homogeneous boundary value problem; infinite-order coefficient matrix; perfectly conducting coaxial conductor; phase speed variations; slow wave structures; solvability condition; wave propagation characteristics; Anisotropic magnetoresistance; Boundary conditions; Dielectrics; Dispersion; Equations; Mathematical model; Symmetric matrices; Dispersion characteristics; Dispersion equation; Tape helix; surface current distribution;
Conference_Titel :
Vacuum Electronics Conference, IEEE International
Conference_Location :
Monterey, CA
DOI :
10.1109/IVEC.2014.6857622