Publication | Open Access
“Stückelberg Interferometry” with Ultracold Molecules
73
Citations
18
References
2007
Year
EngineeringMicroscopyInterferometer DynamicsInterferometryMagnetic ResonanceUltracold MoleculesUltracold AtomSingle MoleculeBiophysicsQuantum SciencePhysicsAtomic PhysicsCoherent ProcessQuantum ChemistryMicrowave SpectroscopySpectroscopyUltracold Feshbach MoleculesApplied PhysicsCondensed Matter PhysicsStückelberg InterferometerMedicine
We report on the realization of a time-domain "Stückelberg interferometer", which is based on the internal-state structure of ultracold Feshbach molecules. Two subsequent passages through a weak avoided crossing between two different orbital angular momentum states in combination with a variable hold time lead to high-contrast population oscillations. This allows for a precise determination of the energy difference between the two molecular states. We demonstrate a high degree of control over the interferometer dynamics. The interferometric scheme provides new possibilities for precision measurements with ultracold molecules.
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