Title :
Exact solution to diffraction problem by wedges with a class of anisotropic impedance faces: oblique incidence of a plane electromagnetic wave
Author :
Lyalinov, Mikhail A. ; Zhu, Ning Yan
Author_Institution :
Dept. of Math. Phys., St. Petersburg Univ., Petrodvorets-St. Petersburg, Russia
fDate :
6/1/2003 12:00:00 AM
Abstract :
This paper studies diffraction of an obliquely incident, arbitrarily polarized plane electromagnetic wave by an anisotropic impedance wedge with an opening angle 2Φ between 0 and 2π, and presents a closed-form exact solution to a class of impedance wedge faces and the related uniform asymptotic solution (UAS). On use of a unitary similarity transform, the boundary conditions on the wedge faces is brought into a form, which makes the exactly soluble class of impedance faces evident. The exact solution is found with help of the Sommerfeld-Malyuzhinets (1896, 1958) technique, a generalized Malyuzhinets function χΦ and the so-called S-integrals. A standard procedure yields therefrom the UAS. The exact solution agrees with known analytical results in special cases, and the numerical results of UAS are confirmed by that of parabolic equation method (PEM).
Keywords :
electric impedance; electromagnetic wave diffraction; integral equations; parabolic equations; EM wave diffraction; S-integrals; Sommerfeld-Malyuzhinets technique; anisotropic impedance faces; anisotropic impedance wedge; boundary conditions; closed-form exact solution; exact solution; generalized Malyuzhinets function; oblique incidence; obliquely incident EM wave; opening angle; parabolic equation method; plane electromagnetic wave; uniform asymptotic solution; unitary similarity transform; Anisotropic magnetoresistance; Boundary conditions; Electromagnetic diffraction; Electromagnetic scattering; Electromagnetic wave polarization; Equations; Impedance; Physics; Tensile stress; Transforms;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2003.812277