Publication | Open Access
Atom Interferometry with Bose-Einstein Condensates in a Double-Well Potential
496
Citations
30
References
2004
Year
EngineeringAtom InterferometryInterferometryOptical PropertiesUltracold AtomCoherent Phase EvolutionQuantum SciencePhotonicsPhysicsAtomic PhysicsQuantum ChemistryBose-einstein CondensationQuantum OpticTrapped-atom InterferometerNatural SciencesCondensed Matter PhysicsApplied PhysicsSpatial PhaseCoherent Process
A trapped-atom interferometer was demonstrated using gaseous Bose-Einstein condensates coherently split by deforming an optical single-well potential into a double-well potential. The relative phase between the two condensates was determined from the spatial phase of the matter wave interference pattern formed upon releasing the condensates from the separated potential wells. Coherent phase evolution was observed for condensates held separated by 13 microm for up to 5 ms and was controlled by applying ac Stark shift potentials to either of the two separated condensates.
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