"09" . . . "Thermalizing quantum machines: Dissipation and entanglement" . "US - Spojen\u00E9 st\u00E1ty americk\u00E9" . "quantum information theory; entanglement; dynamics of open quantum systems"@en . "88" . "0031-9007" . "We study the relaxation of a quantum system towards the thermal equilibrium using tools developed within the context of quantum information theory. We consider a model in which the system is a qubit, and reaches equilibrium after several successive two-qubit interactions (thermalizing machines) with qubits of a reservoir. We characterize completely the family of thermalizing machines. The model shows a tight link between dissipation, fluctuations, and the maximal entanglement that can be generated by the machines. The interplay of quantum and classical information processes that give rise to practical irreversibility is discussed."@en . "1"^^ . . "Stelmachovic, Peter" . "4"^^ . . "We study the relaxation of a quantum system towards the thermal equilibrium using tools developed within the context of quantum information theory. We consider a model in which the system is a qubit, and reaches equilibrium after several successive two-qubit interactions (thermalizing machines) with qubits of a reservoir. We characterize completely the family of thermalizing machines. The model shows a tight link between dissipation, fluctuations, and the maximal entanglement that can be generated by the machines. The interplay of quantum and classical information processes that give rise to practical irreversibility is discussed."@cs . . . . . "Gisin, Nicolas" . "097905-1;097905-4" . . . "14330" . "Physical Review Letters" . "We study the relaxation of a quantum system towards the thermal equilibrium using tools developed within the context of quantum information theory. We consider a model in which the system is a qubit, and reaches equilibrium after several successive two-qubit interactions (thermalizing machines) with qubits of a reservoir. We characterize completely the family of thermalizing machines. The model shows a tight link between dissipation, fluctuations, and the maximal entanglement that can be generated by the machines. The interplay of quantum and classical information processes that give rise to practical irreversibility is discussed." . . "Thermalizing quantum machines: Dissipation and entanglement"@en . "666920" . . "Scarani, Valerio" . "Thermalizing quantum machines: Dissipation and entanglement"@en . "[40E1639A1668]" . "Thermalizing quantum machines: Dissipation and entanglement" . "P(GA201/01/0413), P(GA201/98/0369), Z(MSM 143300001)" . . . "Thermalizing quantum machines: Dissipation and entanglement"@cs . . "RIV/00216224:14330/02:00007536!RIV08-MSM-14330___" . "Thermalizing quantum machines: Dissipation and entanglement"@cs . "5"^^ . "RIV/00216224:14330/02:00007536" . . "Bu\u017Eek, Vladim\u00EDr" . "Ziman, Mario" . . .