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Quantum Algorithms

Enhanced Quantum Interface with Collective Ion-Cavity Coupling

arXiv
Authors: B. Casabone, K. Friebe, B. Brandstätter, K. Schüppert, R. Blatt, T. E. Northup

Year

2014

Paper ID

47893

Status

Preprint

Abstract Read

~2 min

Abstract Words

91

Citations

N/A

Abstract

We prepare a maximally entangled state of two ions and couple both ions to the mode of an optical cavity. The phase of the entangled state determines the collective interaction of the ions with the cavity mode, that is, whether the emission of a single photon into the cavity is suppressed or enhanced. By adjusting this phase, we tune the ion--cavity system from sub- to superradiance. We then encode a single qubit in the two-ion superradiant state and show that this encoding enhances the transfer of quantum information onto a photon.

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  • It adds a 2014 reference point for readers tracking recent quantum research.
  • We prepare a maximally entangled state of two ions and couple both ions to the mode of an optical cavity.

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