Title :
Iterative method for analysis of the differential phase shift in an azimuthally magnetized circular ferrite-dielectric waveguide
Author :
Georgieva-Grosse, M.N. ; Georgiev, G.N.
Abstract :
Applying an iterative scheme, the differential phase shift provided by the circular waveguide with a coaxial dielectric cylinder and an azimuthally magnetized ferrite toroid, is figured in normalized form for normal TE01 mode. The method is based on a repeated numerical solution of the structure´s characteristic equation, derived by the complex Tricomi and the real Bessel function, followed by a calculation of the normalized in a suitable way guide radius and phase constant of the wave. The phase shift is found as a difference between the computed numerical equivalents of constants in question for negative and positive magnetization at selected values of the dielectric cylinder to guide radius ratio and the off-diagonal ferrite tensor element. The relative permittivity of the dielectric is assumed larger than that of the ferrite. The results are presented graphically and debated.
Keywords :
Bessel functions; boundary-value problems; circular waveguides; dielectric waveguides; ferrite phase shifters; ferrite waveguides; iterative methods; permittivity; azimuthally magnetized circular ferrite-dielectric waveguide; azimuthally magnetized ferrite toroid; boundary value problems; coaxial dielectric cylinder; complex Tricomi; dielectric cylinder; differential phase shift analysis; iterative method; negative magnetization; normal TE01 mode; off-diagonal ferrite tensor element; positive magnetization; real Bessel function; relative dielectric permittivity; structure characteristic equation; wave phase constant; way guide radius; Dielectrics; Electromagnetic waveguides; Equations; Ferrites; Magnetic anisotropy; Magnetization; Toroidal magnetic fields; Boundary value problems; circular waveguides; ferrite phase shifters; numerical analysis; propagation;
Conference_Titel :
Electromagnetic Theory (EMTS), Proceedings of 2013 URSI International Symposium on
Conference_Location :
Hiroshima
Print_ISBN :
978-1-4673-4939-0