Long-distance radiative excitation transfer between quantum dots in disordered photonic crystal waveguides
arXiv:1307.2792 · doi:10.1103/PhysRevB.88.081303
Abstract
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 micro-eV at a range of 10 micro-meters can be achieved in realistic systems.
5 pages, 3 figures
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- Long-distance radiative coupling between quantum dots in photonic crystal dimers
- Unidirectional light transport in dynamically modulated waveguides
- Quantum effect of one-dimensional photonic crystal