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Laser-like Scheme for Atomic-Matter Waves
130
Citations
14
References
1995
Year
EngineeringLaser ScienceCavity QedOptomechanicsHigh-power LasersLaser-like SchemeUltracold AtomThreshold BehaviourQuantum OpticsPhotonicsQuantum SciencePhysicsRelativistic Laser-matter InteractionAtomic PhysicsBroglie Wave ResonatorsPoissonian Atom StatisticsQuantum OpticNatural SciencesApplied PhysicsOptical Trapping
We present a scheme for a laser-like source of atoms, starting from atomic de Broglie wave resonators, for which we seek to overcome losses by gain. The resonators are blue-detuned optical dipole-force traps, which can be loaded continuously or repetitively with laser-cooled atoms. This is achieved by trapping the atoms in a different internal state than that used for laser cooling. The transfer of cold atoms into the trapped states involves emission of a photon and can be stimulated by the presence of identical bosonic atoms in the final atomic state. Numerical simulations show threshold behaviour, mode competition and Poissonian atom statistics above threshold.
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