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Quantum Statistical Properties of Photons and Atoms in Interaction of an Atomic Bose–Einstein Condensate with Lasers
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1998
Year
EngineeringQuantized Laser FieldQuantum ConversionsSuper-intense LasersUltracold AtomQuantum MatterQuantum OpticsQuantum SciencePhotonicsPhysicsClassical OpticsAtomic PhysicsQuantum InformationBose-einstein CondensationPhoton StatisticCondensed Matter TheoryQuantum TransducersQuantum OpticNatural SciencesApplied PhysicsQuantum Statistical PropertiesQuantum DevicesQuantum SystemAtomic Bose–einstein Condensate
In this paper, we study quantum statistical properties of atoms and photons in interaction of -atomic Bose–Einstein condensate in the ground-state hyperfine sublevels with laser fields. We investigate not only quantum conversions between atoms in the condensate and photons in the quantized laser field, but also transfer of nonclassical characteristics of atoms and photons between input states and output states when the atom field is initially in a number state and the quantized laser field is in the even coherent state and the odd coherent state, respectively. We find various conditions to realize these quantum conversions. We also study atom-photon quantum correlations and their input-output conversions. It is indicated that there are atom-field nonclassical correlations.