Publication | Open Access
Enhanced Squeezing of a Collective Spin via Control of Its Qudit Subsystems
34
Citations
24
References
2012
Year
EngineeringMany-body Quantum PhysicSpin SystemsMagnetic ResonanceSpin DynamicSpin PhenomenonQuantum ComputingEnhanced SqueezingQuantum EntanglementUnitary ControlQuantum SciencePhysicsCollective SqueezingQuantum InformationCollective SpinQuantum MagnetismSpintronicsQuantum OpticQuantum TechnologyNatural SciencesApplied PhysicsCollective Spin SqueezingQudit Subsystems
Unitary control of qudits can improve the collective spin squeezing of an atomic ensemble. Preparing the atoms in a state with large quantum fluctuations in magnetization strengthens the entangling Faraday interaction. The resulting increase in interatomic entanglement can be converted into metrologically useful spin squeezing. Further control can squeeze the internal atomic spin without compromising entanglement, providing an overall multiplicative factor in the collective squeezing. We model the effects of optical pumping and study the tradeoffs between enhanced entanglement and decoherence. For realistic parameters we see improvements of ~10 dB.
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