Dispersion and radiation properties for bound and leaky modes supported by 1-D printed periodic structures are investigated. A new type of Brillouin diagram is presented that accounts for different types of physical leakage, namely, leakage into one or more surface waves or also simultaneously into space. This new Brillouin diagram not only provides a physical insight into the dispersive behavior of such periodic structures, but it also provides a simple and convenient way to correctly choose the integration paths that arise from a spectral-domain moment-method analysis. Numerical results illustrate the usefulness of this new Brillouin diagram in explaining the leakage and stopband behavior for these types of periodic structures
This paper presents a novel method for calculating the dispersion characteristic of 1D periodic gene...
In this work an innovative method for the characterization of dispersion in metamaterials is present...
In this work an innovative method for the characterization of dispersion in metamaterials is present...
Dispersion and radiation properties for bound and leaky modes supported by 1-D printed periodic stru...
Dispersion and radiation properties for bound and leaky modes supported by 1-D printed periodic stru...
In this work, the dispersion and radiation properties of bound and leaky modes on one-dimensional pr...
In this work, the dispersion and radiation properties of bound and leaky modes on one-dimensional pr...
In this work, the dispersion and radiation properties of bound and leaky modes on one-dimensional pr...
In this work, the transition between bound and leaky modes on one-dimensional periodic structures p...
In this work, the transition between bound and leaky modes on one-dimensional periodic structures p...
In this work, the transition between bound and leaky modes on one-dimensional periodic structures p...
In this work, the transition at backward endfire between bound (nonleaky) and leaky modes on one-dim...
In this work, the transition at backward endfire between bound (nonleaky) and leaky modes on one-dim...
This paper presents a novel method for calculating the dispersion characteristic of 1D periodic gene...
A full-wave numerical approach for the analysis and design of two-dimensional printed periodic struc...
This paper presents a novel method for calculating the dispersion characteristic of 1D periodic gene...
In this work an innovative method for the characterization of dispersion in metamaterials is present...
In this work an innovative method for the characterization of dispersion in metamaterials is present...
Dispersion and radiation properties for bound and leaky modes supported by 1-D printed periodic stru...
Dispersion and radiation properties for bound and leaky modes supported by 1-D printed periodic stru...
In this work, the dispersion and radiation properties of bound and leaky modes on one-dimensional pr...
In this work, the dispersion and radiation properties of bound and leaky modes on one-dimensional pr...
In this work, the dispersion and radiation properties of bound and leaky modes on one-dimensional pr...
In this work, the transition between bound and leaky modes on one-dimensional periodic structures p...
In this work, the transition between bound and leaky modes on one-dimensional periodic structures p...
In this work, the transition between bound and leaky modes on one-dimensional periodic structures p...
In this work, the transition at backward endfire between bound (nonleaky) and leaky modes on one-dim...
In this work, the transition at backward endfire between bound (nonleaky) and leaky modes on one-dim...
This paper presents a novel method for calculating the dispersion characteristic of 1D periodic gene...
A full-wave numerical approach for the analysis and design of two-dimensional printed periodic struc...
This paper presents a novel method for calculating the dispersion characteristic of 1D periodic gene...
In this work an innovative method for the characterization of dispersion in metamaterials is present...
In this work an innovative method for the characterization of dispersion in metamaterials is present...