Toward an ion-photon quantum interface in an optical cavity
arXiv:1105.0579 · doi:10.1007/s00340-011-4861-0
Abstract
We demonstrate several building blocks for an ion-photon interface based on a trapped Ca ion in an optical cavity. We identify a favorable experimental configuration and measure system parameters, including relative motion of the trapped ion and the resonator mode. A complete spectrum of cavity-assisted Raman transitions between the and manifolds is obtained. On two of these transitions, we generate orthogonally polarized cavity photons, and we demonstrate coherent manipulation of the corresponding pair of atomic states. Possible implementations of atom-photon entanglement and state mapping within the ion-cavity system are discussed.
11 pages, 11 figures
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- Reversible state transfer between light and a single trapped atom
- Absolute frequency measurement of the 40Ca+ S1/2 - D5/2 clock transition
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