Publication | Closed Access
Experimental Determination of the Motional Quantum State of a Trapped Atom
676
Citations
21
References
1996
Year
Spectral TheoryQuantum DynamicEngineeringQuantum MeasurementNumber State BasisMeasurement ProblemCoherent DisplacementsQuantum EntanglementQuantum MatterQuantum ScienceQuantum TomographyMotional Quantum StatePhysicsExperimental DeterminationQuantum InformationAtomic PhysicsQuantum TransducersQuantum DecoherenceDensity MatricesTrapped AtomNatural SciencesApplied PhysicsQuantum DevicesQuantum SystemCoherent Process
We reconstruct the density matrices and Wigner functions for various quantum states of motion of a harmonically bound ${}^{9}{\mathrm{Be}}^{+}$ ion. We apply coherent displacements of different amplitudes and phases to the input state and measure the number state populations. Using novel reconstruction schemes we independently determine both the density matrix in the number state basis and the Wigner function. These reconstructions are sensitive indicators of decoherence in the system.
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