We extend the Green's function formalism in a binary 2D composite to 3D. Using the formalism, we investigate the dielectric resonances, local-field distribution, and effective linear optical responses for one-bond, two-bond and three-bond clusters, as well as for various disordered composites. Due to the different values of Green's function in 2D and 3D, for the same cluster, the values of the dielectric resonances 3D are smaller than those in 2D, but the fields are more localized than those in 2D. The Sum rule of dielectric resonance in three-component composites is extended to d dimensions. For the same resonance, the intensity of the local-field in 3D is also weaker than that in the 2D case, but the fields are more localized th...
We extended a previously developed diagrammatic formulation for the calculation of the effective die...
We present a very efficient recursive method to calculate the effective optical response of metamate...
The spectral properties of composite materials based on small particles under 1D, 2D, and 3D size co...
We extend the Green's function formalism in a binary 2D composite to 3D. Using the formalism, we inv...
We investigate the dielectric resonance, local field distribution and effective optical response in ...
We investigate the dielectric resonance, local field distribution and optical response of randomly o...
In the resonant composites, the formerly developed Green's function formalism (GFF) can be used...
We have investigated the optical response of two clusters in an infinite random conductance network ...
We study the statistics of local-field distribution solved by the Green's-function formalism [Y...
10 pages, 6 figures, LaTeX document class EPJBinary disordered systems are usually obtained by mixin...
The bulk macroscopic dielectric response of a disordered composite is calculated employing a large f...
Powdered solids often present very specific properties due to their granular nature. Such powders ar...
We generalize the Bergman-Milton spectral representation, originally derived for a two-component com...
14 pages, 7 figuresAvailable for download at https://arxiv.org/abs/1206.0857Effects of two-body dipo...
The influence of clustering effects on the susceptibility of composed materials is considered by mea...
We extended a previously developed diagrammatic formulation for the calculation of the effective die...
We present a very efficient recursive method to calculate the effective optical response of metamate...
The spectral properties of composite materials based on small particles under 1D, 2D, and 3D size co...
We extend the Green's function formalism in a binary 2D composite to 3D. Using the formalism, we inv...
We investigate the dielectric resonance, local field distribution and effective optical response in ...
We investigate the dielectric resonance, local field distribution and optical response of randomly o...
In the resonant composites, the formerly developed Green's function formalism (GFF) can be used...
We have investigated the optical response of two clusters in an infinite random conductance network ...
We study the statistics of local-field distribution solved by the Green's-function formalism [Y...
10 pages, 6 figures, LaTeX document class EPJBinary disordered systems are usually obtained by mixin...
The bulk macroscopic dielectric response of a disordered composite is calculated employing a large f...
Powdered solids often present very specific properties due to their granular nature. Such powders ar...
We generalize the Bergman-Milton spectral representation, originally derived for a two-component com...
14 pages, 7 figuresAvailable for download at https://arxiv.org/abs/1206.0857Effects of two-body dipo...
The influence of clustering effects on the susceptibility of composed materials is considered by mea...
We extended a previously developed diagrammatic formulation for the calculation of the effective die...
We present a very efficient recursive method to calculate the effective optical response of metamate...
The spectral properties of composite materials based on small particles under 1D, 2D, and 3D size co...