[1] We derive the Ewald representation for the dyadic periodic Green's functions to represent the electromagnetic field in a three dimensional (3D) periodic array of electric and magnetic dipoles. Then we use the developed theory to analyze the modes with real and complex wave number in a 3D periodic lattice of lead telluride (PbTe) microspheres at infrared frequencies and in a 3D periodic lattice of titanium dioxide (TiO2) microspheres at millimeter waves. Each microsphere is equivalently modeled with both an electric and a magnetic dipole, via a method here called the dual dipole approximation (DDA). The 3D lattices exhibit first a magnetic-induced then an electric-induced feature determined by microsphere magnetic and electric resonances...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
A novel method is elaborated for the electromagnetic scattering from periodical arrays of scatterers...
We discuss the propagation of electromagnetic waves in a triply periodic lattice of dielectric spher...
[1] We derive the Ewald representation for the dyadic periodic Green's functions to represent the el...
We characterize the modes with real and complex wavenumbers for both longitudinal and transverse pol...
We characterize the modes with real and complex wavenumbers for both longitudinal and transverse pol...
We characterize the modes with real and complex wavenumbers for both longitudinal and transverse pol...
We characterize the modes with real and complex wavenumbers for both longitudinal and transverse pol...
states (with respect to the mode traveling direction) in three dimensional (3D) periodic arrays of t...
Complex optical modes in 3D-periodic arrays of metallic nanospheres are analyzed at optical frequenc...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
Complex optical modes in 3D-periodic arrays of metallic nanospheres are analyzed at optical frequenc...
Complex optical modes in 3D-periodic arrays of metallic nanospheres are analyzed at optical frequenc...
Complex optical modes in 3D-periodic arrays of metallic nanospheres are analyzed at optical frequenc...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
A novel method is elaborated for the electromagnetic scattering from periodical arrays of scatterers...
We discuss the propagation of electromagnetic waves in a triply periodic lattice of dielectric spher...
[1] We derive the Ewald representation for the dyadic periodic Green's functions to represent the el...
We characterize the modes with real and complex wavenumbers for both longitudinal and transverse pol...
We characterize the modes with real and complex wavenumbers for both longitudinal and transverse pol...
We characterize the modes with real and complex wavenumbers for both longitudinal and transverse pol...
We characterize the modes with real and complex wavenumbers for both longitudinal and transverse pol...
states (with respect to the mode traveling direction) in three dimensional (3D) periodic arrays of t...
Complex optical modes in 3D-periodic arrays of metallic nanospheres are analyzed at optical frequenc...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
Complex optical modes in 3D-periodic arrays of metallic nanospheres are analyzed at optical frequenc...
Complex optical modes in 3D-periodic arrays of metallic nanospheres are analyzed at optical frequenc...
Complex optical modes in 3D-periodic arrays of metallic nanospheres are analyzed at optical frequenc...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
A novel method is elaborated for the electromagnetic scattering from periodical arrays of scatterers...
We discuss the propagation of electromagnetic waves in a triply periodic lattice of dielectric spher...