2007
DOI: 10.1134/s1063776107110039
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Multiphoton transitions in a spin system driven by strong bichromatic field

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Cited by 16 publications
(22 citation statements)
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“…Such transitions were studied both in microscopic systems [2,125], and in the Josephson-junction qubits [126][127][128]. Also for the case of a flux qubit it was demonstrated that the persistence of Rabi oscillations can be supported by either the low-frequency signal [129] or induced by noise [130].…”
Section: Dynamical Behavior Of a Two-level Systemmentioning
confidence: 99%
“…Such transitions were studied both in microscopic systems [2,125], and in the Josephson-junction qubits [126][127][128]. Also for the case of a flux qubit it was demonstrated that the persistence of Rabi oscillations can be supported by either the low-frequency signal [129] or induced by noise [130].…”
Section: Dynamical Behavior Of a Two-level Systemmentioning
confidence: 99%
“…22 where a related quantity, namely the absorption of an external field by a resonantly driven spin-1 2 system in a modulated longitudinal field, has been studied.…”
Section: B the Shape Of The Envelopementioning
confidence: 99%
“…This level splitting is much smaller than the level splitting of the undressed electron spin ν e (= ν L ), which allows reaching the strong driving regime with moderate microwave powers 25,26 . Furthermore, the dressed qubit can be driven using frequency modulation (FM) of the MW source 23 , which does not add any heating to that of the MW power used for dressing.…”
mentioning
confidence: 99%
“…We observe clear deviations from normal Rabi oscillations and we numerically simulate the time evolution of the states in excellent agreement with the experimental data. The ease with which we can reach this regime and the level of control that we have over the driving fields, make the dressed electron spin a model system for investigating the strong driving regime, where the RWA breaks down and Bloch-Siegert shifts become important 25,27,28 . The development of deterministic quantum control beyond the RWA can have a significant advantage for quantum computation by allowing much faster gate operations to be performed 26,29,30 .…”
mentioning
confidence: 99%