Publication | Open Access
Exact master equation for a spin interacting with a spin bath: Non-Markovianity and negative entropy production rate
85
Citations
67
References
2017
Year
Quantum DynamicEngineeringMany-body Quantum PhysicSpin DynamicSpin PhenomenonMeasurement ProblemExact Master EquationQuantum ComputingNon-markovian Information BackflowQuantum Mechanical PropertyCentral SpinQuantum EntanglementQuantum ScienceQuantum StatePhysicsSpin BathEntropyNatural SciencesEntropy ProductionInteracting Particle SystemQuantum System
An exact canonical master equation of the Lindblad form is derived for a central spin interacting uniformly with a sea of completely unpolarized spins. The Kraus operators for the dynamical map are also derived. The non-Markovianity of the dynamics in terms of the divisibility breaking of the dynamical map and the increase of the trace distance fidelity between quantum states is shown. Moreover, it is observed that the irreversible entropy production rate is always negative (for a fixed initial state) whenever the dynamics exhibits non-Markovian behavior. In continuation with the study of witnessing non-Markovianity, it is shown that the positive rate of change of the purity of the central qubit is a faithful indicator of the non-Markovian information backflow. Given the experimental feasibility of measuring the purity of a quantum state, a possibility of experimental demonstration of non-Markovianity and the negative irreversible entropy production rate is addressed. This gives the present work considerable practical importance for detecting the non-Markovianity and the negative irreversible entropy production rate.
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