Using finite-difference time-domain calculations, we investigate out-of-plane coupling between a square-lattice planar photonic crystal and a conventional waveguide located above the photonic crystal. We couple a waveguide oriented in the GX direction to a photonic crystal mode in the second band and show that anticrossing takes place. In this way, a self-collimated beam is launched in the planar photonic crystal, with full power transfer. Furthermore, we investigate the coupling between a waveguide oriented in the GM direction and a photonic crystal and show that single photonic crystal modes can be selectively excited
We have experimentally observed the coupling of a Bloch wave in a single-line-defect planar photonic...
International audienceMesoscopic Photonic Crystals (MPhCs) are composed of alternating natural or ar...
Guiding on-chip optical beams without diffraction is very important in the future’s all-photonic cir...
Using finite-difference time-domain calculations, we investigate out-of-plane coupling between a squ...
We analyze, in three dimensions, the dispersion properties of dielectric slabs perforated with two-d...
Abstract—We analyze, in three dimensions, the dispersion prop-erties of dielectric slabs perforated ...
In order to integrate superdispersive elements based on photonic crystals, such as the superprism, w...
Self-collimation in photonic crystals has received a lot of attention in the literature, partly due ...
We utilize the anomalous dispersion of planar-photonic crystals (PhCs) near the dielectric band edge...
Self-collimation is a dispersion property of many photonic crystals (PCs), in which light beam can p...
The analysis and simulation result of a 1×3 beam splitter in a two-dimensional square-lattice photon...
The dispersion diagram of the leaky modes in the planar photonic crystal waveguide is experimentally...
Photonic crystals are engineered periodic structures that provide great control over electromagnetic...
We describe a novel scheme based on evanescent guided-wave coupling for optically interfacing betwee...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2000.Includes bibliographic...
We have experimentally observed the coupling of a Bloch wave in a single-line-defect planar photonic...
International audienceMesoscopic Photonic Crystals (MPhCs) are composed of alternating natural or ar...
Guiding on-chip optical beams without diffraction is very important in the future’s all-photonic cir...
Using finite-difference time-domain calculations, we investigate out-of-plane coupling between a squ...
We analyze, in three dimensions, the dispersion properties of dielectric slabs perforated with two-d...
Abstract—We analyze, in three dimensions, the dispersion prop-erties of dielectric slabs perforated ...
In order to integrate superdispersive elements based on photonic crystals, such as the superprism, w...
Self-collimation in photonic crystals has received a lot of attention in the literature, partly due ...
We utilize the anomalous dispersion of planar-photonic crystals (PhCs) near the dielectric band edge...
Self-collimation is a dispersion property of many photonic crystals (PCs), in which light beam can p...
The analysis and simulation result of a 1×3 beam splitter in a two-dimensional square-lattice photon...
The dispersion diagram of the leaky modes in the planar photonic crystal waveguide is experimentally...
Photonic crystals are engineered periodic structures that provide great control over electromagnetic...
We describe a novel scheme based on evanescent guided-wave coupling for optically interfacing betwee...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2000.Includes bibliographic...
We have experimentally observed the coupling of a Bloch wave in a single-line-defect planar photonic...
International audienceMesoscopic Photonic Crystals (MPhCs) are composed of alternating natural or ar...
Guiding on-chip optical beams without diffraction is very important in the future’s all-photonic cir...