Journal of Physics B Atomic Molecular and Optical Physics · 2002 · 15 citations · 18 references
Quantum DynamicCharge ExcitationsEngineeringLinear Stark StateIntegrable SystemQuantum MaterialsUltracold AtomQuantum MatterQuantum SciencePhysicsAtomic PhysicsQuantum ChemistryCondensed Matter TheorySolid-state PhysicQuantum MagnetismCircular Stark StateNatural SciencesCondensed Matter PhysicsApplied PhysicsExcited ShellQuantum ChaosSingle Rydberg ShellMany-body Problem
Probabilities for adiabatic or near-adiabatic state transformation within a highly excited shell of Li(n = 25) were studied experimentally and theoretically for a time dependent electric field, (t), and a constant magnetic field, . The fields were sufficiently weak and the time dependence slow enough such that only states belonging to the chosen shell were involved. The studies show that the dynamics are governed by the approximate hydrogenic character of the system in most cases, but for some specific time dependences it is influenced strongly by core interactions as expressed through the quantum defects, δl. The s-state is effectively decoupled from the rest of the n = 25 manifold due to a very large quantum defect. However the quantum defects of the p, d and f states are shown to play a decisive role in the dynamics. The core interactions lead to avoided crossings, non-adiabatic state transformations, and possibly even phase-interference effects. When a resonance condition pertaining to the hydrogenic character of the system is fulfilled, a linear Stark state is transformed completely into a circular Stark state oriented along f.
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Coherent Control of an Atomic Collision in a Cavity
S. Osnaghi, Patrice Bertet, Alexia Auffèves et al. · Physical Review Letters · 2001 · 592 citations · Full text