We propose and experimentally show the mechanism of beam super-collimation by axisymmetric photonic crystals, specifically by periodic (in propagation direction) structure of layers of concentric rings. The physical mechanism behind the effect is an inverse scattering cascade of diffracted wave components back into on-and near-axis angular field components, resulting in substantial enhancement of intensity of these components. We explore the super-collimation by numerical calculations and prove it experimentally. We demonstrate experimentally the axial field enhancement up to 7 times in terms of field intensity.Peer Reviewe
Metamaterials and photonic crystals are engineered composites that exhibit electromagnetic propertie...
Photonic crystals due to their angular bandgaps and quasi-bandgaps can provide spatial (angular) fil...
We propose a two dimensional (2D) photonic crystal (PhC) structure that supports super-collimation o...
We propose and experimentally show the mechanism of beam super-collimation by axisymmetric photonic ...
We propose and demonstrate experimentally super-collimation of light beams by an axisymmetric diffra...
Recently, interesting light beam propagation phenomena were discovered in so called axisymmetric pho...
Efficient beam supercollimation is proposed and shown experimentally by axisymmetric aperiodic photo...
We utilize the anomalous dispersion of planar-photonic crystals (PhCs) near the dielectric band edge...
Photonic crystals (PhCs) have wavelength scale periodically alternating refractive indexes. Photon i...
We utilize the anomalous dispersion of planar photonic crystals near the dielectric band edge to con...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
We utilize the anomalous dispersion of planar photonic crystals near the dielectric band edge to con...
Photonic structures with a periodic modulation of the optical refractive index open novel possibilit...
Metamaterials and photonic crystals are engineered composites that exhibit electromagnetic propertie...
We describe the surprising phenomenon of near-perfect coupling from free space into uniform two-dime...
Metamaterials and photonic crystals are engineered composites that exhibit electromagnetic propertie...
Photonic crystals due to their angular bandgaps and quasi-bandgaps can provide spatial (angular) fil...
We propose a two dimensional (2D) photonic crystal (PhC) structure that supports super-collimation o...
We propose and experimentally show the mechanism of beam super-collimation by axisymmetric photonic ...
We propose and demonstrate experimentally super-collimation of light beams by an axisymmetric diffra...
Recently, interesting light beam propagation phenomena were discovered in so called axisymmetric pho...
Efficient beam supercollimation is proposed and shown experimentally by axisymmetric aperiodic photo...
We utilize the anomalous dispersion of planar-photonic crystals (PhCs) near the dielectric band edge...
Photonic crystals (PhCs) have wavelength scale periodically alternating refractive indexes. Photon i...
We utilize the anomalous dispersion of planar photonic crystals near the dielectric band edge to con...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
We utilize the anomalous dispersion of planar photonic crystals near the dielectric band edge to con...
Photonic structures with a periodic modulation of the optical refractive index open novel possibilit...
Metamaterials and photonic crystals are engineered composites that exhibit electromagnetic propertie...
We describe the surprising phenomenon of near-perfect coupling from free space into uniform two-dime...
Metamaterials and photonic crystals are engineered composites that exhibit electromagnetic propertie...
Photonic crystals due to their angular bandgaps and quasi-bandgaps can provide spatial (angular) fil...
We propose a two dimensional (2D) photonic crystal (PhC) structure that supports super-collimation o...