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Autonomous quantum thermal machine for generating steady-state entanglement

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arxiv 1504.00187 v3 pith:FCUHUMOF submitted 2015-04-01 quant-ph cond-mat.mes-hall

classification quant-phcond-mat.mes-hall
keywords thermalentanglementsteady-statemachinequantumqubitsautonomousbaths
verification ladder T0 review T1 audit T2 compute T3 formal
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We discuss a simple quantum thermal machine for the generation of steady-state entanglement between two interacting qubits. The machine is autonomous in the sense that it uses only incoherent interactions with thermal baths, but no source of coherence or external control. By weakly coupling the qubits to thermal baths at different temperatures, inducing a heat current through the system, steady-state entanglement is generated far from thermal equilibrium. Finally, we discuss two possible implementations, using superconducting flux qubits or a semiconductor double quantum dot. Experimental prospects for steady-state entanglement are promising in both systems.

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