We study the thermodynamic performance of a finite-time non-regenerative quantum Stirling-like cycle used as a heat engine. We consider specifically the case in which the working substance (WS) is a two-level system (TLS). The Stirling cycle is made of two isochoric transformations separated by a compression and an expansion stroke during which the WS is in contact with a thermal reservoir. To describe these two strokes we derive a non-Markovian master equation which allows to study the real-time dynamics of a driven open quantum system with arbitrary fast driving. Following the real-time dynamics of the WS using this master equation, the endpoints of the isotherms can deviate from the equilibrium thermal states. The role of this deviation ...
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...
We study the thermodynamic performance of a finite-time non-regenerative quantum Stirling-like cycle...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
We study the reversible quantum Stirling cycle with a single spin or two coupled spins as ...
We study a quantum Stirling cycle which extracts work using quantized energy levels of a potential w...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
The finite-time operation of a quantum heat engine that uses a single particle as a working medium g...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
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...
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...
We study the thermodynamic performance of a finite-time non-regenerative quantum Stirling-like cycle...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
We study the reversible quantum Stirling cycle with a single spin or two coupled spins as ...
We study a quantum Stirling cycle which extracts work using quantized energy levels of a potential w...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
The finite-time operation of a quantum heat engine that uses a single particle as a working medium g...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
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...
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...