Title :
Wave Propagation in Parallel Plate Metallic Waveguide With Finite Conductivity and Three Dimensional Roughness
Author :
Ding, Ruihua ; Tsang, Leung ; Braunisch, Henning ; Chang, Wenmo
Author_Institution :
Signal Integrity & Power Delivery, Intel Corp., Santa Clara, CA, USA
Abstract :
We study the effects of random roughness on wave propagation in a parallel plate metallic waveguide with finite conductivity. The rough surface is three dimensional (3D) with roughness heights varying in both horizontal directions. Integral equations are obtained from the extinction theorem formulated with layered medium Green´s function. The second order small perturbation method is then applied to solve the integral equations. A closed form expression for the coherent wave is derived, which is expressed in terms of a three-fold Sommerfeld type integral due to the waveguide structure. Approximate methods are applied to calculate the Sommerfeld integral. The results based on the approximations are shown to agree with that of direct integration. The coherent wave enhancement factors of absorption are computed. Results of the present 3D roughness case are compared with the previous results of two dimensional (2D) roughness. The results for waveguides are also compared with the results obtained for a plane wave incident on a metal surface with 3D roughness. Results are illustrated for 3D roughness with a variety of power spectra. It is shown that enhancement factors of 3D roughness are larger than for 2D roughness. We also show that enhancement factors for a waveguide are larger than that of the plane wave case. Comparisons are also made between the theoretical results and measurements.
Keywords :
Green´s function methods; approximation theory; electromagnetic wave propagation; integral equations; parallel plate waveguides; rough surfaces; surface roughness; waveguide theory; 2D roughness; approximate methods; closed form expression; coherent wave enhancement factors; electromagnetic wave propagation; extinction theorem; finite conductivity; incident plane wave; layered medium Green´s function; parallel plate metallic waveguide; power spectra; rough surface; three dimensional roughness; three-fold Sommerfeld type integral equation; two dimensional surface roughness; waveguide structure; Absorption; Conductivity; Metals; Rough surfaces; Surface roughness; Surface waves; Vectors; Perturbation method; random rough surface; three dimensional; waveguide structure;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2012.2214012