Publication | Open Access
Vacuum spin squeezing
45
Citations
51
References
2017
Year
Vacuum StateQuantum PhotonicsEngineeringCavity QedSpin DynamicSpin PhenomenonQuantum ComputingEnsemble Collective SpinQuantum EntanglementQuantum SciencePhotonicsPhysicsQuantum InformationSpintronicsQuantum OpticElectromagnetic VacuumNatural SciencesApplied PhysicsQuantum Photonic Device
We investigate the generation of entanglement (spin squeezing) in an optical-transition atomic clock through the coupling to an optical cavity in its vacuum state. We show that if each atom is prepared in a superposition of the ground state and a long-lived electronic excited state, and viewed as a spin-1/2 system, then the collective vacuum light shift entangles the atoms, resulting in a squeezed distribution of the ensemble collective spin, without any light applied. This scheme reveals that even an electromagnetic vacuum can constitute a useful resource for entanglement and quantum manipulation. By rotating the spin direction while coupling to the vacuum, the scheme can be extended to implement two-axis twisting resulting in stronger squeezing.
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