Publication | Closed Access
Experimental observation of quantum correlations in four-wave mixing with a conical pump
17
Citations
30
References
2017
Year
Quantum PhotonicsEngineeringQuantum CorrelationsConical Conjugate BeamConical PumpQuantum SensingMultimode Quantum StatesExperimental ObservationQuantum ComputingConjugate BeamsQuantum EntanglementQuantum OpticsOptical PumpingQuantum SciencePhotonicsQuantum TomographyPhysicsQuantum InformationQuantum OpticQuantum TechnologyNatural SciencesApplied PhysicsQuantum Photonic DeviceCoherent ProcessWave Interference
Generation of multimode quantum states has drawn much attention recently due to its importance for both fundamental science and the future development of quantum technologies. Here, by using a four-wave mixing process with a conical pump beam, we have experimentally observed about -3.8 dB of intensity-difference squeezing between a single-axial probe beam and a conical conjugate beam. The multi-spatial-mode nature of the generated quantum-correlated beams has been shown by comparing the variation tendencies of the intensity-difference noise of the probe and conjugate beams under global attenuation and local cutting attenuation. Due to its compactness, phase-insensitive nature, and easy scalability, our scheme may find potential applications in quantum imaging, quantum information processing, and quantum metrology.
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