Based on a recently developed non-perturbative platform designed to simulate the full quantum dynamics of quantum thermal machines, the situation of a quantum refrigerator operating according to an Otto cycle is studied. The periodic steady-state dynamics is discussed in detail as well as the key thermodynamic quantities work, heat, and entropy. A particular benefit of the formulation is that it allows to access explicitly the work required for switching on and off the interaction with the respective thermal reservoirs in a consistent way. The domains in which the device operates in refrigerator mode are characterized
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
The performance enhancements observed in various models of continuous quantum thermal machines have ...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
In 2013, quantum thermal machines were shown to exhibit quantum supremacy, an enhanced performance b...
We analyze a quantum Otto refrigerator based on a superconducting qubit coupled to two LC resonators...
We analyze a quantum Otto refrigerator based on a superconducting qubit coupled to two LC resonators...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
An overview of the realization of an Otto cycle in the quantum regime is given. A detailed descript...
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
The performance enhancements observed in various models of continuous quantum thermal machines have ...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
In 2013, quantum thermal machines were shown to exhibit quantum supremacy, an enhanced performance b...
We analyze a quantum Otto refrigerator based on a superconducting qubit coupled to two LC resonators...
We analyze a quantum Otto refrigerator based on a superconducting qubit coupled to two LC resonators...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
International audienceThe study of quantum thermodynamics is key to the development of quantum therm...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
An overview of the realization of an Otto cycle in the quantum regime is given. A detailed descript...
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
Absorption refrigerators are autonomous thermal machines that harness the spontaneous flow of heat f...
The performance enhancements observed in various models of continuous quantum thermal machines have ...