We theoretically investigate the magnitude and range of the photon-mediated interaction between two quantum dots embedded in a photonic crystal waveguide, including fabrication disorder both in the crystal and in the dot positioning. We find that disorder-induced light localization has a drastic effect on the excitation transfer rate-as compared to an ideal structure-and that this rate varies widely among different disorder configurations. Nevertheless, we also find that significant rates of 50 mu eV at a range of 10 mu m can be achieved in realistic systems
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
Influence of the various types of disorder on propagation of light in one-dimensional periodic struc...
Photonic crystals are optical materials in which patterning of dielectric materials on a sub-wavelen...
We present a statistical study of the Purcell enhancement of the light emission from quantum dots co...
A statistical theory of the coupling between a quantum emitter and Anderson-localized cavity modes i...
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
The interplay between order and disorder in photonic lattices opens up a wide range of novel optical...
Wave propagation in disordered media can be strongly modified by multiple scattering and wave interf...
Quantifying the radiative coupling between distant quantum emitters can be relevant for applications...
A major challenge in quantum optics and quantum information technology is to enhance the interaction...
We report the direct observation of the development of long-range spatial intensity correlation and ...
Abstract. Wave propagation in disordered media can be strongly modified by multiple scattering and w...
We demonstrate lasing in GaAs photonic crystal waveguides with InAs quantum dots as gain medium. Str...
We study the mutual interaction between two identical quantum dots coupled to the normal modes of tw...
Disorder in photonic-crystal slab waveguides can cause localization of light. Sapienza et al. observ...
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
Influence of the various types of disorder on propagation of light in one-dimensional periodic struc...
Photonic crystals are optical materials in which patterning of dielectric materials on a sub-wavelen...
We present a statistical study of the Purcell enhancement of the light emission from quantum dots co...
A statistical theory of the coupling between a quantum emitter and Anderson-localized cavity modes i...
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
The interplay between order and disorder in photonic lattices opens up a wide range of novel optical...
Wave propagation in disordered media can be strongly modified by multiple scattering and wave interf...
Quantifying the radiative coupling between distant quantum emitters can be relevant for applications...
A major challenge in quantum optics and quantum information technology is to enhance the interaction...
We report the direct observation of the development of long-range spatial intensity correlation and ...
Abstract. Wave propagation in disordered media can be strongly modified by multiple scattering and w...
We demonstrate lasing in GaAs photonic crystal waveguides with InAs quantum dots as gain medium. Str...
We study the mutual interaction between two identical quantum dots coupled to the normal modes of tw...
Disorder in photonic-crystal slab waveguides can cause localization of light. Sapienza et al. observ...
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
Influence of the various types of disorder on propagation of light in one-dimensional periodic struc...
Photonic crystals are optical materials in which patterning of dielectric materials on a sub-wavelen...