Publication | Open Access
Quantum transport efficiency and Fourier's law
87
Citations
19
References
2012
Year
Quantum DynamicEngineeringQuantum ComputingQuantum Mechanical PropertyThermodynamicsQuantum EntanglementBiophysicsQuantum ScienceSteady-state Energy TransferPhysicsQuantum Transport EfficiencyQuantum DecoherenceHeat ConductionNatural SciencesApplied PhysicsQuantum DevicesQuantum CommunicationQuantum SystemQuantum BiologyThermal Reservoirs
We analyze the steady-state energy transfer in a chain of coupled two-level systems connecting two thermal reservoirs. Through an analytic treatment we find that the energy current is independent of the system size, hence violating Fourier's law of heat conduction. The classical diffusive behavior in Fourier's law of heat conduction can be recovered by introducing decoherence to the quantum systems constituting the chain. We relate these results to recent discussions of energy transport in biological light-harvesting systems, and discuss the role of quantum coherence and entanglement.
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