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Fast three-qubit Toffoli quantum gate based on the three-body Förster resonances in Rydberg atoms

arXiv:1808.03473 · doi:10.1103/PhysRevA.98.042704

Abstract

We propose a scheme of fast three-qubit Toffoli quantum gate for ultracold neutral-atom qubits. The scheme is based on the Stark-tuned three-body Förster resonances, which we have observed in our recent experiment [D.B.Tretyakov et al., Phys.Rev.Lett. 119, 173402 (2017)]. The three-body resonance corresponds to a transition when the three interacting atoms change their states simultaneously, and it occurs at a different dc electric field with respect to the two-body Förster resonance. A combined effect of three-body and two-body Förster interactions in external electric and magnetic fields near the three-body resonance results in complex coherent behavior of the populations and phases of collective states of a three-atom system. We have found that it is possible to obtain experimental conditions suitable to implement three-qubit Toffoli gate with 96.8\% fidelity and less than 3~$μ$s duration.

7 pages, 5 figures, Version 2 revised according to referee's comments. Typo in Eq.(2) corrected in Version 3