Publication | Open Access
Anomalous decoherence in a dissipative two-level system
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Citations
40
References
2013
Year
Quantum DynamicQuantum ScienceEngineeringQuantum ComputingPhysicsMany-body Quantum PhysicNatural SciencesQuantum Mechanical PropertyQuantum SimulationDissipative Two-level SystemNon-markovian Decoherence DynamicsWave InterferenceQuantum ChaosQuantum EntanglementConventional Delocalized-localized QptBiophysicsQuantum DecoherenceAnomalous Decoherence
We study systematically the non-Markovian decoherence dynamics of a dissipative two-level system, i.e., the so-called spin-boson model. It is interesting to find that the decoherence tends to be inhibited with the increase of the coupling strength between the system and the reservoir, which is contrary to the common recognition that a stronger coupling always induces a severer decoherence. This is attributed to the occurrence of a quantum phase transition (QPT). The relationship between this QPT and conventional delocalized-localized QPT is also discussed. Our result suggests a useful control method to overcome the detrimental effects of the reservoir to the system.
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