This dissertation presents a numerical method to solve scattering problems that involve inhomogeneous bianisotropic scatterers of an arbitrary three-dimensional shape. The constitutive relations of the scatterer are assumed to be of the most general form and composed of four 3 by 3 matrices or tensors. Using this method, the quantities that describe the electromagnetic behavior in both near and far field regions can be obtained. The problem is described by a set of mixed potential formulations, where the total fields are separated into the incident fields and the scattered fields, and the scattered fields are related to the electric and magnetic potentials which are excited by electric and magnetic bound charges and polarization currents. T...
A discrete formulation is presented for solving the shortcomings of existing methods used in the com...
The solenoidal basis functions defined on tetrahedrons are modified to permit the analysis of the pr...
The Method of Moments (MoM) is deeply described and used for the analysis of electromagnetic (EM) ra...
This paper presents a method of moments (MoM) solution for the problems of electromagnetic scatterin...
This work is a result of an extensive research related to the electromagnetic scattering by various ...
In this dissertation, the method of moments technique for analyzing electromagnetic scattering from ...
A framework in which a variety of problems regarding scattering can be solved is presented. The scat...
In this dissertation, a double-grid finite-difference frequency-domain (DG-FDFD) method is introduce...
[[abstract]]The scattering problem for a dielectric body is formulated in terms of the electric fiel...
This dissertation is an investigation of electromagnetic scattering from planar, spherical, and cyli...
The scattering of plane electromagnetic waves by arbitrarily shaped perfectly conducting bodies in t...
In this dissertation, new finite-difference time-domain (FDTD) scattered-field formulations for chir...
The scattering problems of general anisotropic 3-D objects are studied, using poten-tial formulation...
In this dissertation, the problem of electromagnetic scattering from a chiral cylinder of arbitrary ...
This paper studies, in detail, a variety of formulations for the hybrid finite-element and boundary-...
A discrete formulation is presented for solving the shortcomings of existing methods used in the com...
The solenoidal basis functions defined on tetrahedrons are modified to permit the analysis of the pr...
The Method of Moments (MoM) is deeply described and used for the analysis of electromagnetic (EM) ra...
This paper presents a method of moments (MoM) solution for the problems of electromagnetic scatterin...
This work is a result of an extensive research related to the electromagnetic scattering by various ...
In this dissertation, the method of moments technique for analyzing electromagnetic scattering from ...
A framework in which a variety of problems regarding scattering can be solved is presented. The scat...
In this dissertation, a double-grid finite-difference frequency-domain (DG-FDFD) method is introduce...
[[abstract]]The scattering problem for a dielectric body is formulated in terms of the electric fiel...
This dissertation is an investigation of electromagnetic scattering from planar, spherical, and cyli...
The scattering of plane electromagnetic waves by arbitrarily shaped perfectly conducting bodies in t...
In this dissertation, new finite-difference time-domain (FDTD) scattered-field formulations for chir...
The scattering problems of general anisotropic 3-D objects are studied, using poten-tial formulation...
In this dissertation, the problem of electromagnetic scattering from a chiral cylinder of arbitrary ...
This paper studies, in detail, a variety of formulations for the hybrid finite-element and boundary-...
A discrete formulation is presented for solving the shortcomings of existing methods used in the com...
The solenoidal basis functions defined on tetrahedrons are modified to permit the analysis of the pr...
The Method of Moments (MoM) is deeply described and used for the analysis of electromagnetic (EM) ra...