We fabricate and experimentally characterize an H0 photonic crystal slab nanocavity with a design optimized for maximal quality factor, Q = 1.7 x 10(6). The cavity, fabricated from a silicon slab, has a resonant mode at lambda = 1.59 mu m and a measured Q-factor of 400 000. It displays nonlinear effects, including high-contrast optical bistability, at a threshold power among the lowest ever reported for a silicon device. With a theoretical modal volume as small as V = 0.34(lambda/n)(3), this cavity ranks among those with the highest Q/V ratios ever demonstrated, while having a small footprint suited for integration in photonic circuits. (C) 2014 AIP Publishing LLC
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
By creating different types of defects in the photonic crystal lattice, various nanophotonics compon...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
We report on the experimental realization of ultra-high quality factor (Q) designs of the L3-type ph...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
Photonic resonators that allow an electromagnetic field to be confined in an ultrasmall volume with ...
Photonic crystal (PhC) nanocavities allow to confine light with ultra high quality (Q) factors to wa...
We report on the experimental realization of ultra-high quality factor (Q) designs of the L3-type ph...
We report on the experimental realization of ultra-high quality factor (Q) designs of the L3-type ph...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Background: The production of compact and multi-functional photonic devices has become a topic of m...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
By creating different types of defects in the photonic crystal lattice, various nanophotonics compon...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
We report on the experimental realization of ultra-high quality factor (Q) designs of the L3-type ph...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
We report on the realization of high-Q/V photonic crystal cavities in thin silicon membranes, with r...
Photonic resonators that allow an electromagnetic field to be confined in an ultrasmall volume with ...
Photonic crystal (PhC) nanocavities allow to confine light with ultra high quality (Q) factors to wa...
We report on the experimental realization of ultra-high quality factor (Q) designs of the L3-type ph...
We report on the experimental realization of ultra-high quality factor (Q) designs of the L3-type ph...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Background: The production of compact and multi-functional photonic devices has become a topic of m...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
By creating different types of defects in the photonic crystal lattice, various nanophotonics compon...