We introduce a confinement mechanism in photonic crystal slab cavities, which relies on the superposition of two incommensurate one-dimensional lattices in a line-defect waveguide. It is shown that the resulting photonic profile realizes an effective quasi-periodic bichromatic potential for the electromagnetic field confinement yielding extremely high quality (Q) factor nanocavities, while simultaneously keeping the mode volume close to the diffraction limit. We apply these concepts to pillar- and hole-based photonic crystal slab cavities, respectively, and a Q-factor improvement by over an order of magnitude is shown over existing designs, especially in pillar-based structures. Thanks to the generality and easy adaptation of such confinem...
We report on the design and fabrication of high-Q silicon photonic crystal cavities operating at tel...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
Planar photonic crystals are constructed by combining two-dimensional periodic structures with high ...
We report on the realization of high-Q/V silicon photonic crystal cavities with resonance wavelength...
We present a design for a two-dimensional photonic crystal slab cavity in which the electric field l...
We present a design for a two-dimensional photonic crystal slab cavity in which the electric field l...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Bound states in the continuum (BICs) in photonic crystal slabs represent the resonances with an infi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
We present results from pillar-based photonic crystal cavities that have been designed to enhance qu...
The bound states in the continuum (BICs) in photonic crystal (PhC) slabs presume infinite periodicit...
We propose a design for high Q-factor, pillar-based photonic crystal cavities, with the goal of enha...
We design novel photonic crystal slab heterostructures, substituting the air in the holes with liqui...
We propose a design for high Q-factor, pillar-based photonic crystal cavities, with the goal of enha...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
We report on the design and fabrication of high-Q silicon photonic crystal cavities operating at tel...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
Planar photonic crystals are constructed by combining two-dimensional periodic structures with high ...
We report on the realization of high-Q/V silicon photonic crystal cavities with resonance wavelength...
We present a design for a two-dimensional photonic crystal slab cavity in which the electric field l...
We present a design for a two-dimensional photonic crystal slab cavity in which the electric field l...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Bound states in the continuum (BICs) in photonic crystal slabs represent the resonances with an infi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
We present results from pillar-based photonic crystal cavities that have been designed to enhance qu...
The bound states in the continuum (BICs) in photonic crystal (PhC) slabs presume infinite periodicit...
We propose a design for high Q-factor, pillar-based photonic crystal cavities, with the goal of enha...
We design novel photonic crystal slab heterostructures, substituting the air in the holes with liqui...
We propose a design for high Q-factor, pillar-based photonic crystal cavities, with the goal of enha...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
We report on the design and fabrication of high-Q silicon photonic crystal cavities operating at tel...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
Planar photonic crystals are constructed by combining two-dimensional periodic structures with high ...