We study a quantum heat engine at strong coupling between the system and the thermal reservoirs. Exploiting a collective coordinate mapping, we incorporate system-reservoir correlations into a consistent thermodynamic analysis, thus circumventing the usual restriction to weak coupling and vanishing correlations. We apply our formalism to the example of a quantum Otto cycle, demonstrating that the performance of the engine is diminished in the strong coupling regime with respect to its weakly coupled counterpart, producing a reduced net work output and operating at a lower energy conversion efficiency. We identify costs imposed by sudden decoupling of the system and reservoirs around the cycle as being primarily responsible for the diminishe...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
We consider quantum heat engines that operate between nonequilibrium stationary reservoirs. We evalu...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
International audienceWhile strong system-bath coupling produces rich and interesting phenomena, app...
International audienceWhile strong system-bath coupling produces rich and interesting phenomena, app...
International audienceWhile strong system-bath coupling produces rich and interesting phenomena, app...
We study coupled quantum systems as the working media of thermodynamic machines. Under a suitable ph...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
Energy conversion of heat into work at the quantum level is modeled by quantum heat machines (QHMs) ...
Quantum thermal machines make use of non-classical thermodynamic resources, one of which include int...
Energy conversion of heat into work at the quantum level is modeled by quantum heat machines (QHMs) ...
Uncovering whether strong system-bath coupling can be an advantageous operation resource for energy ...
We propose a four-level quantum heat engine in an Otto cycle with a working substance of two spins s...
We propose a four-level quantum heat engine in an Otto cycle with a working substance of two spins s...
The performance of quantum heat engines is generally based on the analysis of a single cycle. We cha...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
We consider quantum heat engines that operate between nonequilibrium stationary reservoirs. We evalu...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
International audienceWhile strong system-bath coupling produces rich and interesting phenomena, app...
International audienceWhile strong system-bath coupling produces rich and interesting phenomena, app...
International audienceWhile strong system-bath coupling produces rich and interesting phenomena, app...
We study coupled quantum systems as the working media of thermodynamic machines. Under a suitable ph...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
Energy conversion of heat into work at the quantum level is modeled by quantum heat machines (QHMs) ...
Quantum thermal machines make use of non-classical thermodynamic resources, one of which include int...
Energy conversion of heat into work at the quantum level is modeled by quantum heat machines (QHMs) ...
Uncovering whether strong system-bath coupling can be an advantageous operation resource for energy ...
We propose a four-level quantum heat engine in an Otto cycle with a working substance of two spins s...
We propose a four-level quantum heat engine in an Otto cycle with a working substance of two spins s...
The performance of quantum heat engines is generally based on the analysis of a single cycle. We cha...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
We consider quantum heat engines that operate between nonequilibrium stationary reservoirs. We evalu...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...