Plane-Wave Diffraction from Resistive-Filled Circular Hole in Infinite Resistive Plane: An Analytically Regularizing Approach

被引:1
作者
Lucido, Mario [1 ]
Chirico, Gaetano [1 ]
Migliore, Marco Donald [1 ]
Pinchera, Daniele [1 ]
Schettino, Fulvio [1 ]
机构
[1] Univ Cassino & Southern Lazio, Dept Elect & Informat Engn, I-03043 Cassino, Italy
来源
APPLIED SCIENCES-BASEL | 2023年 / 13卷 / 13期
关键词
inhomogeneous resistive plane; integral equation formulation; Helmholtz-Galerkin technique; ELECTROMAGNETIC SCATTERING; DISK; TRANSMISSION; RESONANCE; APERTURE; ARRAYS; LIGHT; FIELD;
D O I
10.3390/app13137465
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The study of the electromagnetic diffraction from penetrable screens with apertures and/or inhomogeneities is of great relevance today due to the huge number of modern applications in which they are involved. In this paper, the analysis of the plane wave scattering from a resistive-filled circular hole in a resistive plane is addressed. The uniquely solvable boundary value problem for the Maxwell equations, obtained via imposing generalized boundary conditions, power boundedness condition, and Silver-Muller radiation condition, is equivalently formulated in terms of an infinite set of singular dual integral equations in the vector Hankel transform domain. The Helmholtz-Galerkin technique allows for the discretization and, simultaneously, analytical regularization of the obtained integral equations. Fast convergence is guaranteed by a suitable choice of the basis functions reconstructing the physical behavior of the fields at the discontinuity between the two involved media. Moreover, the full-wave nature of the proposed approach allows the direct assessment of near-field and far-field parameters.
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页数:14
相关论文
共 58 条
[1]  
Abramowitz M., 1984, HDB MATH FUNCTIONS
[2]   Simple analytical model to use in CAD tools for designing FSS devices: plasmonic transmission through hole arrays in thin films [J].
Ali, Nouran M. ;
Ali, Tamer A. .
APPLIED PHYSICS B-LASERS AND OPTICS, 2023, 129 (01)
[3]   ELECTROMAGNETIC INDUCTION IN FINITE THIN SHEETS [J].
ASHOUR, AA .
QUARTERLY JOURNAL OF MECHANICS AND APPLIED MATHEMATICS, 1965, 18 :73-&
[4]   NEAR-FIELD OPTICS - MICROSCOPY, SPECTROSCOPY, AND SURFACE MODIFICATION BEYOND THE DIFFRACTION LIMIT [J].
BETZIG, E ;
TRAUTMAN, JK .
SCIENCE, 1992, 257 (5067) :189-195
[5]   Surface-integral equations for electromagnetic scattering from impenetrable and penetrable sheets [J].
Bleszynshi, E. ;
Bleszynski, M. ;
Jaroszewicz, T. .
IEEE Antennas and Propagation Magazine, 1993, 35 (06) :14-25
[6]   DIFFRACTION THEORY [J].
BOUWKAMP, CJ .
REPORTS ON PROGRESS IN PHYSICS, 1954, 17 :35-100
[7]  
Bowman J.J., 1969, Electromagnetic and acoustic scattering by simple shapes
[8]  
Braver IM, 2014, IEEE CONV EL ELECT I
[9]   THE BEHAVIOR OF THE ELECTROMAGNETIC-FIELD NEAR THE EDGE OF A RESISTIVE HALF-PLANE [J].
BRAVER, IM ;
FRIDBERG, PS ;
GARB, KL ;
YAKOVER, IM .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 1988, 36 (12) :1760-1768
[10]   ELECTROMAGNETIC PENETRATION THROUGH APERTURES IN CONDUCTING SURFACES [J].
BUTLER, CM ;
RAHMATSAMII, Y ;
MITTRA, R .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 1978, 26 (01) :82-93