Publication | Open Access
Two-Photon Blockade in an Atom-Driven Cavity QED System
273
Citations
40
References
2017
Year
PhotonicsQuantum ScienceQuantum PhotonicsEngineeringQuantum ComputingPhysicsNonlinear OpticsNatural SciencesQuantum OpticCavity QedApplied PhysicsPhoton StatisticSimultaneous Two-photon BunchingQuantum EntanglementPhoton BlockadeTwo-photon BlockadeQuantum Photonic DeviceQuantum Optics
Photon blockade is a dynamical quantum-nonlinear effect in driven systems with an anharmonic energy ladder. For a single atom strongly coupled to an optical cavity, we show that atom driving gives a decisively larger optical nonlinearity than cavity driving. This enhances single-photon blockade and allows for the implementation of two-photon blockade where the absorption of two photons suppresses the absorption of further photons. As a signature, we report on three-photon antibunching with simultaneous two-photon bunching observed in the light emitted from the cavity. Our experiment constitutes a significant step towards multiphoton quantum-nonlinear optics.
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