Publication | Closed Access
Entanglement-enhanced probing of a delicate material system
21
Citations
5
References
2013
Year
Unknown Venue
Limited Probe EnergyEngineeringSpin SystemsMagnetic ResonanceQuantum MeasurementQuantum SensingQuantum ComputingEntanglement-enhanced ProbingQuantum EntanglementQuantum MatterQuantum SciencePhotonicsPhysicsHigh SensitivityQuantum InformationQuantum TransducersSpintronicsQuantum OpticQuantum TechnologyNatural SciencesApplied PhysicsQuantum Photonic DeviceQuantum Memory
Probing of delicate systems demands high sensitivity from limited probe energy. Quantum optical techniques to beat the standard quantum limit (SQL) offer a practical advantage for these measurements. Here we report the first entanglement-enhanced measurement of a delicate material system. We non-destructively probe an atomic spin ensemble by near-resonant Faraday rotation, a measurement that is limited by probe-induced scattering in quantum memory and spin-squeezing applications. We use narrowband, atom-resonant NooN states to beat the standard quantum limit of sensitivity, both on a per-photon and a per-damage basis.
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