We propose a model of a quantum thermal refrigeration machine interacting with an external atom via an entanglement phenomenon. The machine is formed by three qubits of two-level, where each one interacts locally with its proper reservoir at different temperatures. The second qubit of the refrigerator and the external qubit are initially prepared in an entangled state. The effect of the quantum refrigerator on the entanglement of the final atomic state is studied. It is shown that the survival of the entanglement of the atomic system (Qubits 2 and 4) depends on the temperature of the second reservoir. The heat flow from the cold bath (cooling power) to the hot bath is discussed, where we prove that the refrigeration may be enhanced by the e...
We have investigated the entanglement between two dipole coupled two-level artificial atoms (superco...
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
We investigated coupled-qubit-based thermal machines powered by quantum measurements and feedback. W...
Small self-contained quantum thermal machines function without external source of work or control bu...
A small quantum absorption refrigerator, consisting of three qubits, is discussed in the transient r...
The four-level entangled quantum refrigerator (QR) is studied in the XXZ Heisenberg model for the tw...
Small quantum absorption refrigerators have recently attracted renewed attention. Here we present a ...
We study the relaxation of a quantum system towards the thermal equilibrium using tools developed wi...
We design a measurement-based quantum refrigerator with an arbitrary number of qubits situated in a ...
Autonomous entanglement engines have recently been proposed to generate steady-state bipartite and m...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issu...
The four-level entangled quantum heat engine (QHE) is analyzed in the various Heisenberg models for ...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
Abstract We propose to use a few-qubit system as a compact quantum refrigerator for cooling an inter...
We have investigated the entanglement between two dipole coupled two-level artificial atoms (superco...
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
We investigated coupled-qubit-based thermal machines powered by quantum measurements and feedback. W...
Small self-contained quantum thermal machines function without external source of work or control bu...
A small quantum absorption refrigerator, consisting of three qubits, is discussed in the transient r...
The four-level entangled quantum refrigerator (QR) is studied in the XXZ Heisenberg model for the tw...
Small quantum absorption refrigerators have recently attracted renewed attention. Here we present a ...
We study the relaxation of a quantum system towards the thermal equilibrium using tools developed wi...
We design a measurement-based quantum refrigerator with an arbitrary number of qubits situated in a ...
Autonomous entanglement engines have recently been proposed to generate steady-state bipartite and m...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issu...
The four-level entangled quantum heat engine (QHE) is analyzed in the various Heisenberg models for ...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
Abstract We propose to use a few-qubit system as a compact quantum refrigerator for cooling an inter...
We have investigated the entanglement between two dipole coupled two-level artificial atoms (superco...
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
We investigated coupled-qubit-based thermal machines powered by quantum measurements and feedback. W...