An efficient and powerful full-wave electromagnetic technique is presented to characterise and design periodic metamaterial structures. First, the spectral finite-difference time-domain (FDTD) method with periodic boundary conditions and uniaxial perfect matched layer is employed to predict the performance of a mushroom-like artificial magnetic conductor (AMC) surface and further extended to characterise a negative-refractive-index material consisting of lumped and distributed transmission-line elements. Then, a new computational technique is developed to design and optimise periodic metamaterial structures by integrating the spectral FDTD method with a genetic algorithm (GA), namely the micro-genetic algorithm. This computational technique...
Metamaterials are artificial structures which can manipulate electromagnetic (EM) waves at will. The...
Recent years have seen a growing interest in a new kind of periodic structures called ``metamaterial...
This paper introduces several different design methodologies for multiband artificial magnetic condu...
We present a GA/FDTD optimisation technique and its application in the design of single and multi-ba...
An efficient and powerful computational method is presented to synthesize a meta-material to specifi...
In this paper, multilayered dielectric structures in conjunction with a Frequency Selective Surface ...
The use of electromagnetic band-gap (EBG) structures, also known as photonic band-gap (PBG) structur...
Periodic structures are of great importance in electromagnetics due to their wide range of applicati...
A set of tools are proposed for the efficient modeling of several classes of problems related to per...
Artificially structured materials (metamaterials) demonstrating negative index of refraction have op...
In this paper, three different situations of the symmetry frequency selective surface (FSS) shaped a...
A technique for the implementation of devices designed using transformation optics (TO) is presented...
A technique for the implementation of devices designed using transformation optics (TO) is presented...
The Perfectly Matched Layer (PML) has recently been introduced by Berenger as a material absorbing b...
International audienceThe use of an artificial magnetic conductor (AMC) has proved very effective to...
Metamaterials are artificial structures which can manipulate electromagnetic (EM) waves at will. The...
Recent years have seen a growing interest in a new kind of periodic structures called ``metamaterial...
This paper introduces several different design methodologies for multiband artificial magnetic condu...
We present a GA/FDTD optimisation technique and its application in the design of single and multi-ba...
An efficient and powerful computational method is presented to synthesize a meta-material to specifi...
In this paper, multilayered dielectric structures in conjunction with a Frequency Selective Surface ...
The use of electromagnetic band-gap (EBG) structures, also known as photonic band-gap (PBG) structur...
Periodic structures are of great importance in electromagnetics due to their wide range of applicati...
A set of tools are proposed for the efficient modeling of several classes of problems related to per...
Artificially structured materials (metamaterials) demonstrating negative index of refraction have op...
In this paper, three different situations of the symmetry frequency selective surface (FSS) shaped a...
A technique for the implementation of devices designed using transformation optics (TO) is presented...
A technique for the implementation of devices designed using transformation optics (TO) is presented...
The Perfectly Matched Layer (PML) has recently been introduced by Berenger as a material absorbing b...
International audienceThe use of an artificial magnetic conductor (AMC) has proved very effective to...
Metamaterials are artificial structures which can manipulate electromagnetic (EM) waves at will. The...
Recent years have seen a growing interest in a new kind of periodic structures called ``metamaterial...
This paper introduces several different design methodologies for multiband artificial magnetic condu...