Arrays of photonic cavities are relevant structures for developing large-scale photonic integrated circuits and for investigating basic quantum electrodynamics phenomena due to the photon hopping between interacting nanoresonators. Here we investigate, by means of scanning near-field spectroscopy, numerical calculations and an analytical model, the role of different neighboring interactions that give rise to delocalized supermodes in different photonic crystal array configurations. The systems under investigation consist of three nominally identical two-dimensional photonic crystal nanocavities on membrane aligned along the two symmetry axes of the triangular photonic crystal lattice. We find that the nearest-neighbor and next-nearest-neigh...
We report by means of near-field microscopy on the coupling between two adjacent photonic crystal mi...
Weakly coupled high-Q nanophotonic cavities are building blocks of slow-light waveguides and other n...
A photonic crystal L3 nanocavity, consisting of only three missing neighboring holes, is coupled to ...
Arrays of photonic cavities are relevant structures for developing large-scale photonic integrated c...
Arrays of photonic cavities are relevant structures for developing large-scale photonic integrated c...
Arrays of photonic cavities are relevant structures for developing large-scale photonic integrated c...
In this work, we demonstrate that the compound mode properties of coupled photonic-crystal cavities ...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
| openaire: EC/FP7/631610/EU//GrabFastThe position-dependent mode couplings between a semiconductor ...
A fine control of a photonic molecule is obtained by nanofluidic techniques. The coupling condition ...
We employ a far-field analysis of the angular emission pattern to experimentally assess the symmetry...
The strong coupling regime between excitons in a single self-assembled InAs quantum dot and the cavi...
Weakly coupled high-Q nanophotonic cavities are building blocks of slow-light waveguides and other n...
Recent theoretical work on exciton–light coupling in waveguide-embedded photonic crystals is reviewe...
We report by means of near-field microscopy on the coupling between two adjacent photonic crystal mi...
Weakly coupled high-Q nanophotonic cavities are building blocks of slow-light waveguides and other n...
A photonic crystal L3 nanocavity, consisting of only three missing neighboring holes, is coupled to ...
Arrays of photonic cavities are relevant structures for developing large-scale photonic integrated c...
Arrays of photonic cavities are relevant structures for developing large-scale photonic integrated c...
Arrays of photonic cavities are relevant structures for developing large-scale photonic integrated c...
In this work, we demonstrate that the compound mode properties of coupled photonic-crystal cavities ...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
| openaire: EC/FP7/631610/EU//GrabFastThe position-dependent mode couplings between a semiconductor ...
A fine control of a photonic molecule is obtained by nanofluidic techniques. The coupling condition ...
We employ a far-field analysis of the angular emission pattern to experimentally assess the symmetry...
The strong coupling regime between excitons in a single self-assembled InAs quantum dot and the cavi...
Weakly coupled high-Q nanophotonic cavities are building blocks of slow-light waveguides and other n...
Recent theoretical work on exciton–light coupling in waveguide-embedded photonic crystals is reviewe...
We report by means of near-field microscopy on the coupling between two adjacent photonic crystal mi...
Weakly coupled high-Q nanophotonic cavities are building blocks of slow-light waveguides and other n...
A photonic crystal L3 nanocavity, consisting of only three missing neighboring holes, is coupled to ...