Publication | Closed Access
Experimental Test of Fidelity Limits in Six-Photon Interferometry and of Rotational Invariance Properties of the Photonic Six-Qubit Entanglement Singlet State
85
Citations
20
References
2009
Year
EngineeringEntangled StatesFidelity LimitsQuantum SensingQuantum ComputingRotational InvarianceQuantum Multiphoton InterferometryQuantum EntanglementQuantum SciencePhotonicsPhysicsQuantum InformationPhoton StatisticQuantum OpticSix-photon InterferometryNatural SciencesQuantum CommunicationRotational Invariance PropertiesQuantum Photonic Device
Quantum multiphoton interferometry has now reached the six-photon stage. Thus far, the observed fidelities of entangled states never reached 2/3. We report a high fidelity (estimated at 88%) experiment in which six-qubit singlet correlations were observed. With such a high fidelity we are able to demonstrate the central property of these "singlet" correlations, their "rotational invariance," by performing a full set of measurements in three complementary polarization bases. The patterns are almost indistinguishable. The data reveal genuine six-photon entanglement. We also study several five-photon states, which result upon detection of one of the photons. Multiphoton singlet states survive some types of depolarization and are thus important in quantum communication schemes.
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