We utilize the anomalous dispersion of planar-photonic crystals (PhCs) near the dielectric band edge to control the wavelength-dependent propagation of light. Light beams with up to 20degrees divergence were collimated over a 25-nm (1285 nm to 1310 nm) bandwidth using a triangular lattice. The "super-prism" phenomenon is demonstrated in the same configuration, simply by tuning the wavelength. Sources of loss are discussed. Both the plane-wave expansion calculation and finite-difference time-domain simulation match well with the experimental results. This is the first experimental demonstration of self-collimating phenomena in a PhC configuration.</p
Photonic crystals can be thought of as 'optical analogues' to electronic semiconductors, and have be...
Recently, interesting light beam propagation phenomena were discovered in so called axisymmetric pho...
Using finite-difference time-domain calculations, we investigate out-of-plane coupling between a squ...
We utilize the anomalous dispersion of planar photonic crystals near the dielectric band edge to con...
We utilize the anomalous dispersion of planar photonic crystals near the dielectric band edge to con...
Abstract—We analyze, in three dimensions, the dispersion prop-erties of dielectric slabs perforated ...
Photonic crystals (PhCs) have wavelength scale periodically alternating refractive indexes. Photon i...
We propose compact S-vector superprism providing broadband wavelength sensitivity within a/λ = 0.610...
Photonic structures with a periodic modulation of the optical refractive index open novel possibilit...
We describe theoretical analysis and design of one-dimensional photonic crystal prisms. We found tha...
We analyze, in three dimensions, the dispersion properties of dielectric slabs perforated with two-d...
We propose and experimentally show the mechanism of beam super-collimation by axisymmetric photonic ...
This work reports the fabrication of micron-scale spatially variant photonic crystals (SVPCs) and th...
We theoretically investigate the resolution of the Photonic crystal (PC) superprism as a narrow-band...
Tight control of an optical beam is demonstrated based on self-collimation within threedimensional a...
Photonic crystals can be thought of as 'optical analogues' to electronic semiconductors, and have be...
Recently, interesting light beam propagation phenomena were discovered in so called axisymmetric pho...
Using finite-difference time-domain calculations, we investigate out-of-plane coupling between a squ...
We utilize the anomalous dispersion of planar photonic crystals near the dielectric band edge to con...
We utilize the anomalous dispersion of planar photonic crystals near the dielectric band edge to con...
Abstract—We analyze, in three dimensions, the dispersion prop-erties of dielectric slabs perforated ...
Photonic crystals (PhCs) have wavelength scale periodically alternating refractive indexes. Photon i...
We propose compact S-vector superprism providing broadband wavelength sensitivity within a/λ = 0.610...
Photonic structures with a periodic modulation of the optical refractive index open novel possibilit...
We describe theoretical analysis and design of one-dimensional photonic crystal prisms. We found tha...
We analyze, in three dimensions, the dispersion properties of dielectric slabs perforated with two-d...
We propose and experimentally show the mechanism of beam super-collimation by axisymmetric photonic ...
This work reports the fabrication of micron-scale spatially variant photonic crystals (SVPCs) and th...
We theoretically investigate the resolution of the Photonic crystal (PC) superprism as a narrow-band...
Tight control of an optical beam is demonstrated based on self-collimation within threedimensional a...
Photonic crystals can be thought of as 'optical analogues' to electronic semiconductors, and have be...
Recently, interesting light beam propagation phenomena were discovered in so called axisymmetric pho...
Using finite-difference time-domain calculations, we investigate out-of-plane coupling between a squ...