At the heart of quantum thermodynamics lies a fundamental question about what is genuine "quantum" in quantum heat engines and how to seek this quantumness, so that thermodynamical tasks could be performed more efficiently compared with classical protocols. Here, using the concept of $P$-representability, we define a function called classicality, which quantifies the degree of non-classicality of bosonic modes. This function allows us to explore the role of non-classicality in quantum heat engines and design optimal protocols for work extraction. For two specific cycles, a quantum Otto and a generalised one, we show that non-classicality is a fundamental resource for performing thermodynamic tasks more efficiently.Comment: Published version...
A classical heat engine that extracts work from thermal sources and which does not include coherence...
External driving of bath temperatures with a phase difference of a nonequilibrium quantum engine lea...
The Szil\'ard engine is a mechanism (akin to Maxwell's demon) for converting information into energy...
At the heart of quantum thermodynamics lies a fundamental question about what is genuine “quantum” i...
At the heart of quantum thermodynamics lies a fundamental question about what is genuine “quantum” i...
In the quest for high-performance quantum thermal machines, looking for an optimal thermodynamic eff...
We provide a new operational significance of nonclassicality in nonequilibrium temperature estimatio...
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 investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
We study a minimal quantum Otto heat engine, where the working medium consists of an interacting few...
Generalized measurements may allow the control of its back-action on the quantum system by interpola...
It is investigated whether non-Markovianity, i.e., the memory effects resulting from the coupling of...
The advent of heat engines had a significant impact on society. By transforming heat into useful wo...
We introduce a generalized approach to characterize the non-Markovianity of quantum dynamical maps v...
A classical heat engine that extracts work from thermal sources and which does not include coherence...
External driving of bath temperatures with a phase difference of a nonequilibrium quantum engine lea...
The Szil\'ard engine is a mechanism (akin to Maxwell's demon) for converting information into energy...
At the heart of quantum thermodynamics lies a fundamental question about what is genuine “quantum” i...
At the heart of quantum thermodynamics lies a fundamental question about what is genuine “quantum” i...
In the quest for high-performance quantum thermal machines, looking for an optimal thermodynamic eff...
We provide a new operational significance of nonclassicality in nonequilibrium temperature estimatio...
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 investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
We study a minimal quantum Otto heat engine, where the working medium consists of an interacting few...
Generalized measurements may allow the control of its back-action on the quantum system by interpola...
It is investigated whether non-Markovianity, i.e., the memory effects resulting from the coupling of...
The advent of heat engines had a significant impact on society. By transforming heat into useful wo...
We introduce a generalized approach to characterize the non-Markovianity of quantum dynamical maps v...
A classical heat engine that extracts work from thermal sources and which does not include coherence...
External driving of bath temperatures with a phase difference of a nonequilibrium quantum engine lea...
The Szil\'ard engine is a mechanism (akin to Maxwell's demon) for converting information into energy...