Photonic crystals (PCs) are theoretically studied in order to correlate the structural parameters with the resulting electro-magnetic behaviour. Two-dimensional (2D) PCs of dielectric media are routinely assumed to be formed by circular rods or pores, respectively. Main topics of the paper are band gap modifications (TM- and TE-polarization) for pores of deteriorating roundness, approximated by ellipses of varying eccentricity. On the basis of Maxwell’s equations and a ‘plane wave expansion’, band structures are computed for triangular 2D lattices of air columns in silicon. The results are compared with calculations fo
We study the bandgap properties of two-dimensional photonic crystals created by a lattice of rods or...
Two-dimensional (2D) photonic band gaps (PBG) structure fabricated from anisotropic dielectric is st...
We study the band-gap properties of two-dimensional photonic crystals created by a lattice of rods o...
In recent years, the fabrication and physical characterization of photonic crystals have been met wi...
We have theoretically investigated photonic band structures of two-dimensional (2D) photonic crystal...
Abstract. The existence and properties of photonic band gaps was investigated for a square lattice o...
Large photonic band gaps have been obtained by sweeping the parameters of sub-lattices inside the un...
Si-based 2D macroporous photonic crystals have become of increasing interest, because of their extra...
We investigate different aspects of the absolute photonic band gap (PBG) formation in two-dimensiona...
The photonic band structures of two-dimensional anisotropic photonic crystals have studied by solvin...
We investigate the absolute photonic band gap (PBG) formation in two-dimensional (2-D) photonic crys...
The plane wave expansion method was implemented in modelling and simulating the band structures of t...
We have obtained large photonic band gaps by sweeping parameters of sub-lattices inside the unitary ...
We investigate different aspects of the absolute photonic band gap (PBG) formation for two-dimension...
We present results of photonic band-structure calculations for inverted photonic crystal structures....
We study the bandgap properties of two-dimensional photonic crystals created by a lattice of rods or...
Two-dimensional (2D) photonic band gaps (PBG) structure fabricated from anisotropic dielectric is st...
We study the band-gap properties of two-dimensional photonic crystals created by a lattice of rods o...
In recent years, the fabrication and physical characterization of photonic crystals have been met wi...
We have theoretically investigated photonic band structures of two-dimensional (2D) photonic crystal...
Abstract. The existence and properties of photonic band gaps was investigated for a square lattice o...
Large photonic band gaps have been obtained by sweeping the parameters of sub-lattices inside the un...
Si-based 2D macroporous photonic crystals have become of increasing interest, because of their extra...
We investigate different aspects of the absolute photonic band gap (PBG) formation in two-dimensiona...
The photonic band structures of two-dimensional anisotropic photonic crystals have studied by solvin...
We investigate the absolute photonic band gap (PBG) formation in two-dimensional (2-D) photonic crys...
The plane wave expansion method was implemented in modelling and simulating the band structures of t...
We have obtained large photonic band gaps by sweeping parameters of sub-lattices inside the unitary ...
We investigate different aspects of the absolute photonic band gap (PBG) formation for two-dimension...
We present results of photonic band-structure calculations for inverted photonic crystal structures....
We study the bandgap properties of two-dimensional photonic crystals created by a lattice of rods or...
Two-dimensional (2D) photonic band gaps (PBG) structure fabricated from anisotropic dielectric is st...
We study the band-gap properties of two-dimensional photonic crystals created by a lattice of rods o...