In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of different types of artificial magnetic resonators-i.e., the multiple split-ring resonator, spiral resonator, and labyrinth resonator-which represent popular inclusions to synthesize artificial materials and metamaterials with anomalous values of the permeability in the microwave and millimeter-wave frequency ranges. The proposed models, derived in terms of RLC equivalent circuits, represent an extension of the models presented in a recent publication. In particular, the extended models take into account the presence of a dielectric substrate hosting the metallic inclusions and the losses due to the finite conductivity of the conductors and the fin...
In this letter, new metrics are proposed to provide physical insight into the behavior of metamateri...
A negative-index material (NIM), a metamaterial with simultaneously negative effective permittivity ...
A negative-index material (NIM), a metamaterial with simultaneously negative effective permittivity ...
In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of diffe...
In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of diffe...
In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of diffe...
In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of diffe...
Abstract—In this paper, we derive quasi-static equivalent-circuit models for the analysis and design...
Cataloged from PDF version of article.In this paper, we derive quasi-static equivalent-circuit model...
We present the design of miniaturized resonant inclusions to be employed in the practical realizatio...
We present the design of miniaturized resonant inclusions to be employed in the practical realizatio...
We present the design of miniaturized resonant inclusions to be employed in the practical realizatio...
Metamaterials are artificially constructed "materials" which are formed from arrays of engineered el...
The equivalent circuit model for artificial magnetic materials based on various arrangements of spli...
Abstract—Variety of designs for artificial magnetic materials have been proposed in the literature. ...
In this letter, new metrics are proposed to provide physical insight into the behavior of metamateri...
A negative-index material (NIM), a metamaterial with simultaneously negative effective permittivity ...
A negative-index material (NIM), a metamaterial with simultaneously negative effective permittivity ...
In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of diffe...
In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of diffe...
In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of diffe...
In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of diffe...
Abstract—In this paper, we derive quasi-static equivalent-circuit models for the analysis and design...
Cataloged from PDF version of article.In this paper, we derive quasi-static equivalent-circuit model...
We present the design of miniaturized resonant inclusions to be employed in the practical realizatio...
We present the design of miniaturized resonant inclusions to be employed in the practical realizatio...
We present the design of miniaturized resonant inclusions to be employed in the practical realizatio...
Metamaterials are artificially constructed "materials" which are formed from arrays of engineered el...
The equivalent circuit model for artificial magnetic materials based on various arrangements of spli...
Abstract—Variety of designs for artificial magnetic materials have been proposed in the literature. ...
In this letter, new metrics are proposed to provide physical insight into the behavior of metamateri...
A negative-index material (NIM), a metamaterial with simultaneously negative effective permittivity ...
A negative-index material (NIM), a metamaterial with simultaneously negative effective permittivity ...