arXiv · 1402.6967
Efficient out-coupling of high-purity single photons from a coherent quantum dot in a photonic-crystal cavity
Abstract
We demonstrate a single-photon collection efficiency of $(44.3\pm2.1)\%$ from a quantum dot in a low-Q mode of a photonic-crystal cavity with a single-photon purity of $g^{(2)}(0)=(4\pm5)\%$ recorded above the saturation power. The high efficiency is directly confirmed by detecting up to $962\pm46$ kilocounts per second on a single-photon detector on another quantum dot coupled to the cavity mode. The high collection efficiency is found to be broadband, as is explained by detailed numerical simulations. Cavity-enhanced efficient excitation of quantum dots is obtained through phonon-mediated excitation and under these conditions, single-photon indistinguishability measurements reveal long coherence times reaching $0.77\pm0.19$ ns in a weak-excitation regime. Our work demonstrates that photonic crystals provide a very promising platform for highly integrated generation of coherent single photons including the efficient out-coupling of the photons from the photonic chip.
Explore related subjects
Keep this discovery
K. H. Madsen, S. Ates, J. Liu, A. Javadi, S. M. Albrecht, I. Yeo, S. Stobbe, P. Lodahl. 2014-02-27. Efficient out-coupling of high-purity single photons from a coherent quantum dot in a photonic-crystal cavity. https://doi.org/10.1103/physrevb.90.155303
Cite the original work for its findings. Save a collection to share your selection of sources.