Journal of Mathematical Physics · 2002 · 209 citations · 15 references
Quantum DynamicControl TheoryEngineeringThree-level Quantum SystemsQuantum ComputingQuantum EntanglementQuantum SciencePhotonicsOptimal ControlPhysicsQuantum FeedbackClassical OpticsSub-riemannian GeometryLaser-induced Population TransferQuantum OpticQuantum TechnologyNatural SciencesQuantum DevicesQuantum SystemHamiltonian System
We apply the techniques of control theory and of sub-Riemannian geometry to laser-induced population transfer in two- and three-level quantum systems. The aim is to induce complete population transfer by one or two laser pulses minimizing the pulse fluences. Sub-Riemannian geometry and singular-Riemannian geometry provide a natural framework for this minimization, where the optimal control is expressed in terms of geodesics. We first show that in two-level systems the well-known technique of “π-pulse transfer” in the rotating wave approximation emerges naturally from this minimization. In three-level systems driven by two resonant fields, we also find the counterpart of the “π-pulse transfer.” This geometrical picture also allows one to analyze the population transfer by adiabatic passage.
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Nikolay V. Vitanov, Thomas Halfmann, Bruce W. Shore et al. · Annual Review of Physical Chemistry · 2001 · 948 citations
Optical Pumping, Quantum Science, Programming Language Theory +11
Time optimal control in spin systems
Navin Khaneja, Roger W. Brockett, Steffen J. Glaser · Physical Review A · 2001 · 727 citations · Full text
Vladimir S. Malinovsky, David J. Tannor · Physical Review A · 1997 · 162 citations