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Long-Range Molecular Resonances in a Cold Rydberg Gas
115
Citations
19
References
2003
Year
Microwave SpectroscopyQuantum ScienceReveals ResonancesLocalized Excited StateEngineeringCold Rydberg GasPhysicsExcited State PropertyNatural SciencesSpectroscopyApplied PhysicsMolecular ResonancesRubidium Rydberg AtomsAtomic PhysicsUltracold AtomQuantum ChemistryBose-einstein CondensationElectronic Excited State
We present evidence for molecular resonances in a cold dense gas of rubidium Rydberg atoms. Single UV photon excitation from the 5s ground state to np Rydberg states (n=50-90) reveals resonances at energies corresponding to excited atom pairs (n-1)d+ns. We attribute these normally forbidden transitions to avoided crossings between the long-range molecular potentials of two Rydberg atoms. These strong van der Waals interactions result in avoided crossings at extremely long range, e.g., approximately 58 000 times the Bohr radius (a(0)) for n=70.
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