Journal Article

·2025

An Eigenfunction Expansion Method for EM Scattering by Arbitrary Shaped Multilayer Cylinders with Axially Biased Ferrite Layers

Birol Aslanyürek YTU , Tolga Ulaş Gürbüz

IEEE Antennas and Wireless Propagation Letters

Abstract

Ferrites are widely used in microwave applications due to their anisotropic magnetic properties. In this study, we extend the method that we previously introduced for computing the electromagnetic fields scattered from arbitrary shaped multilayer cylinders with isotropic layers to those with axially biased ferrite layers. The method is basically an eigenfunction expansion procedure developed for noncircular scatterers. When the layers are isotropic, the method is used to solve only the ordinary wave equations. On the other hand, for ferrite layers, the solution of the extraordinary wave equation is required. Here, we derived the necessary expressions within the procedure for solving the extraordinary wave equation. Numerical simulations demonstrate that this extension of the method yields satisfactory results in a short computational time.

Keywords

Eigenfunction Axial symmetry Ferrite (magnet) Scattering Materials science Mathematical analysis Physics Optics Geometry Composite material Mathematics Eigenvalues and eigenvectors

Subject Areas

Electromagnetic Scattering and Analysis ·Atomic and Molecular Physics, and Optics ·Physical Sciences
Advanced Antenna and Metasurface Technologies ·Aerospace Engineering ·Physical Sciences