arXiv · 1411.0738
Direct photonic coupling of a semiconductor quantum dot and a trapped ion
Abstract
Coupling individual quantum systems lies at the heart of building scalable quantum networks. Here, we report the first direct photonic coupling between a semiconductor quantum dot and a trapped ion and we demonstrate that single photons generated by a quantum dot controllably change the internal state of an $\textrm{Yb}^+$ ion. We ameliorate the effect of the sixty-fold mismatch of the radiative linewidths with coherent photon generation and a high-finesse fiber-based optical cavity enhancing the coupling between the single photon and the ion. The transfer of information presented here via the classical correlations between the $σ_z$-projection of the quantum-dot spin and the internal state of the ion provides a promising step towards quantum state-transfer in a hybrid photonic network.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
H. M. Meyer, R. Stockill, M. Steiner, C. Le Gall, C. Matthiesen, E. Clarke, A. Ludwig, J. Reichel, M. Atatüre, M. Köhl. 2014-11-03. Direct photonic coupling of a semiconductor quantum dot and a trapped ion. https://doi.org/10.1103/physrevlett.114.123001
Cite the original work for its findings. Save a collection to share your selection of sources.