The accurate electromagnetic analysis of artificial periodic surfaces formed as planar layers with complicated periodic metallization patterns, having a grid period much smaller than the effective wavelength (densely periodic), is important for the design and analysis of a variety of electromagnetic structures. However, full-wave modeling can be extremely time-consuming and computationally expensive, especially for aperiodic sources in close proximity to periodic surfaces. In this paper, we describe approximate homogenized models for a Green's function that treats planar patterned screens (grids) as quasi-dynamic homogenized impedance surfaces and dielectric layers in a fully dynamic manner. The resulting Green's functions are only slightly...
The Green's function analysis of oversized waveguides with one wall realized as a periodic structure...
A surface with periodic corrugations of suffciently small periodicity is shown to be electromagnetic...
Current numerical methods for the spectral domain analysis of thin, planar periodic structures can b...
The accurate electromagnetic analysis of artificial periodic surfaces formed as planar layers with c...
Abstract—The accurate electromagnetic analysis of artificial pe-riodic surfaces formed as planar lay...
Among the variety of artificial periodic impedance surfaces proposed and studied in the last decade,...
Periodic structures are used widely in electromagnetic devices, including filters, waveguiding struc...
ID-periodic structures embedded in stratified media have been studied for some time in the framework...
A new, rigorous, field-based, seminumerical analysis method is presented to obtain the reflection an...
The shielding effectiveness of artificial periodic screens is investigated with reference to high-fr...
The electromagnetic field excited by an electric line source in the presence of a printed structure ...
The near-field shielding effectiveness of composite screens characterized by spatial periodicity alo...
In this paper, analytical modeling of natural modes is proposed for the rapid and accurate analysis ...
Dyadic Green’s functions for an electric dipole source over an infinite periodic metasurface are obt...
This paper deals with the spatial domain parametrization and physical interpretationof the asymptoti...
The Green's function analysis of oversized waveguides with one wall realized as a periodic structure...
A surface with periodic corrugations of suffciently small periodicity is shown to be electromagnetic...
Current numerical methods for the spectral domain analysis of thin, planar periodic structures can b...
The accurate electromagnetic analysis of artificial periodic surfaces formed as planar layers with c...
Abstract—The accurate electromagnetic analysis of artificial pe-riodic surfaces formed as planar lay...
Among the variety of artificial periodic impedance surfaces proposed and studied in the last decade,...
Periodic structures are used widely in electromagnetic devices, including filters, waveguiding struc...
ID-periodic structures embedded in stratified media have been studied for some time in the framework...
A new, rigorous, field-based, seminumerical analysis method is presented to obtain the reflection an...
The shielding effectiveness of artificial periodic screens is investigated with reference to high-fr...
The electromagnetic field excited by an electric line source in the presence of a printed structure ...
The near-field shielding effectiveness of composite screens characterized by spatial periodicity alo...
In this paper, analytical modeling of natural modes is proposed for the rapid and accurate analysis ...
Dyadic Green’s functions for an electric dipole source over an infinite periodic metasurface are obt...
This paper deals with the spatial domain parametrization and physical interpretationof the asymptoti...
The Green's function analysis of oversized waveguides with one wall realized as a periodic structure...
A surface with periodic corrugations of suffciently small periodicity is shown to be electromagnetic...
Current numerical methods for the spectral domain analysis of thin, planar periodic structures can b...