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Inducing nontrivial qubit coherence through a controlled dispersive environment
Wallace S. Teixeira, Fernando Nicacio, Fernando L. SemiãoWe show how the dispersive regime of the Jaynes-Cummings model may serve as a valuable tool to the study of open quantum systems. We employ it in a bottom-up approach to build an environment that preserves qubit energy and induces varied coherence dynamics. We then present the derivation of a compact expression for the qubit coherence, applied here to the case of a finite number of thermally populated modes in the environment. We also discuss how the model parameters can be adjusted to facilitate the production of short-time monotonic decay (STMD) of the qubit coherence. Our results provide a broadly applicable platform for the investigation of energy-conserving open system dynamics which is fully within the grasp of current quantum technologies.
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Nonequilibrium properties of trapped ions under sudden application of a laser
A. A. Cifuentes, F. Nicacio, M. Paternostro, F. L. Semião -
Coupled harmonic systems as quantum buses in thermal environments
F Nicacio, F L Semião -
Thermal transport in out-of-equilibrium quantum harmonic chains
F. Nicacio, A. Ferraro, A. Imparato, M. Paternostro, F. L. Semião -
Transport of correlations in a harmonic chain
F. Nicacio, F. L. Semião -
Motional entanglement with trapped ions and a nanomechanical resonator
F. Nicacio, K. Furuya, F. L. Semião
1 a 6 de 6 Preprints encontradas Grupo(s): GIQ-UFABC / GOIQ - UFRJ