Publication | Open Access
Storing Light with Subradiant Correlations in Arrays of Atoms
199
Citations
49
References
2016
Year
Quantum PhotonicsEngineeringExcitation Energy TransferQuantum ComputingOptical PropertiesPhotophysical PropertySimple Phenomenological ModelBiophysicsNanophotonicsCollective Atomic ExcitationPhotonicsQuantum ScienceSharp Transmission ResonancesPhysicsAtomic PhysicsLight–matter InteractionQuantum ChemistryPhoton StatisticSubradiant CorrelationsExcited State PropertyQuantum OpticNatural SciencesApplied Physics
We show how strong light-mediated resonant dipole-dipole interactions between atoms can be utilized in a control and storage of light. The method is based on a high-fidelity preparation of a collective atomic excitation in a single correlated subradiant eigenmode in a lattice. We demonstrate how a simple phenomenological model captures the qualitative features of the dynamics and sharp transmission resonances that may find applications in sensing.
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