We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe that the quantum dot photoluminescence intensity and decay rate are strongly enhanced when the emission energy is in resonance with Fabry-Perot (FP) cavity modes in the slow-light regime of the dispersion curve. The experimental results are in agreement with previous theoretical predictions and are further supported by three-dimensional finite element simulations. Our results show that the combination of slow group velocity and Fabry-Perot cavity resonance provide an avenue to efficiently channel photons from quantum dots into waveguides for integrated quantum photonic application
The authors investigate the spontaneous emission dynamics of self-assembled InGaAs quantum dots embe...
Abstract. The authors investigate the spontaneous emission dynamics of self-assembled InGaAs quantum...
Quantum states of light and matter can be manipulated on the nanoscale to provide a technological re...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
The authors investigate the spontaneous emission dynamics of self-assembled InGaAs quantum dots embe...
Abstract. The authors investigate the spontaneous emission dynamics of self-assembled InGaAs quantum...
Quantum states of light and matter can be manipulated on the nanoscale to provide a technological re...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
We report a study of the quantum dot (QD) emission in short photonic crystal waveguides. We observe ...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
The authors investigate the spontaneous emission dynamics of self-assembled InGaAs quantum dots embe...
Abstract. The authors investigate the spontaneous emission dynamics of self-assembled InGaAs quantum...
Quantum states of light and matter can be manipulated on the nanoscale to provide a technological re...