Physical Review Letters · 2000 · 208 citations · 21 references
EngineeringMagnetic ResonanceCold AtomsScattering PropertiesInduced Feshbach ResonancesOptical PropertiesUltracold AtomOptical SpectroscopyMolecular SpectroscopyQuantum SciencePhysicsRelativistic Laser-matter InteractionAtomic PhysicsOptical CouplingLaser PhotochemistryNatural SciencesSpectroscopyOptical PhysicApplied Physics
We have observed optically induced Feshbach resonances in a cold ( <1 mK) sodium vapor. The optical coupling of the ground and excited-state potentials changes the scattering properties of an ultracold gas in much the same way as recently observed magnetically induced Feshbach resonances, but allows for some experimental conveniences associated with using lasers. The scattering properties can be varied by changing either the intensity or the detuning of a laser tuned near a photoassociation transition to a molecular state in the dimer. In principle this method allows the scattering length of any atomic species to be altered. A simple model is used to fit the dispersive resonance line shapes.
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Observation of Feshbach resonances in a Bose–Einstein condensate
S. Inouye, M. R. Andrews, J. Stenger et al. · Nature · 1998 · 2K citations
Molecules in a Bose-Einstein Condensate
R. H. Wynar, R. S. Freeland, D. J. Han et al. · Science · 2000 · 539 citations
Quantum Liquid, Excited State Property, Bose-einstein Condensate +15
Observation of a Feshbach Resonance in Cold Atom Scattering
Ph. W. Courteille, R. S. Freeland, D. J. Heinzen et al. · Physical Review Letters · 1998 · 530 citations
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