We present here in terms of a dyadic Green's function (DGF) a general description of optical phenomena in photonic crystal (PC) structures, described particularly by frequency-dependent components, assuming that PC structures are decomposed into their relatively simple constituent parts via conductivity tensors. We demonstrate this approach by explicitly calculating the DGFs for electromagnetic waves propagating in the one- and two-dimensional dispersive PCs consisting of a periodic array of identical metallic quantum wells and a periodic square array of identical metallic quantum wires, each embedded in a three-dimensional dispersive medium. By means of the explicit analytic dispersion relations, which result from the frequency poles of th...
Photonic crystals are electromagnetic structures that affect the propagation of microwaves, clearly ...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
Abstract—In this paper, we introduce a dispersion equation for 3D photonic crystals made of parallel...
© 2018 American Physical Society. We study band-structure properties of periodic optical systems com...
This is a book chapter for a World Scientific Reference Set edited by Prof. Vadim Markel, a former m...
The paper considers application of the Green's tensor functions to analysis of the multilayer magnet...
In this thesis, the fundamental physical effects of photonic crystals (PC) on the propagation of wav...
In this thesis, the fundamental physical effects of photonic crystals (PC) on the propagation of wav...
this paper, a method for the computation of the band structure of two-dimensional photonic crystals ...
A novel method is elaborated for the electromagnetic scattering from periodical arrays of scatterers...
Using the exact theory of multipole expansions, we construct the two-dimensional Greens function for...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
Photonic crystals are artificial dielectric lattice structures which may be periodic in up to three ...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
Photonic crystals are electromagnetic structures that affect the propagation of microwaves, clearly ...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
Abstract—In this paper, we introduce a dispersion equation for 3D photonic crystals made of parallel...
© 2018 American Physical Society. We study band-structure properties of periodic optical systems com...
This is a book chapter for a World Scientific Reference Set edited by Prof. Vadim Markel, a former m...
The paper considers application of the Green's tensor functions to analysis of the multilayer magnet...
In this thesis, the fundamental physical effects of photonic crystals (PC) on the propagation of wav...
In this thesis, the fundamental physical effects of photonic crystals (PC) on the propagation of wav...
this paper, a method for the computation of the band structure of two-dimensional photonic crystals ...
A novel method is elaborated for the electromagnetic scattering from periodical arrays of scatterers...
Using the exact theory of multipole expansions, we construct the two-dimensional Greens function for...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
Photonic crystals are artificial dielectric lattice structures which may be periodic in up to three ...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
Photonic crystals are electromagnetic structures that affect the propagation of microwaves, clearly ...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
Abstract—In this paper, we introduce a dispersion equation for 3D photonic crystals made of parallel...