Publication | Open Access
All-Optical Quantum Information Processing Using Rydberg Gates
133
Citations
36
References
2014
Year
Quantum SciencePhotonicsRydberg LevelsEngineeringQuantum ComputingPhysicsQuantum OpticNatural SciencesCavity QedQuantum LogicQuantum InformationDipole Blockade PhenomenonPhoton StorageQuantum EntanglementQuantum Photonic DeviceMicrowave PhotonicsOptoelectronicsOptical Logic Gate
In this Letter, we propose a hybrid scheme to implement a photonic controlled-z (CZ) gate using photon storage in highly excited Rydberg states, which controls the effective photon-photon interaction using resonant microwave fields. Our scheme decouples the light propagation from the interaction and exploits the spatial properties of the dipole blockade phenomenon to realize a CZ gate with minimal loss and mode distortion. By excluding the coupling efficiency, fidelities exceeding 95% are achievable and are found to be mainly limited by motional dephasing and the finite lifetime of the Rydberg levels.
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