Quantization of energy is a quintessential characteristic of quantum systems. Here we analyze its effects on the operation of Otto cycle heat machines and show that energy quantization alone may alter and increase machine performance in terms of output work, efficiency, and even operation mode. We show that this difference in performance occurs in machines with inhomogeneous energy level scaling, while quantum machines with homogeneous level scaling behave like classical machines. Our results demonstrate that quantum thermodynamics enables the realization of classically inconceivable Otto machines, such as those with an incompressible working substance. We propose to measure these effects experimentally using a laser-cooled trapped ion as a...
A suitable way of quantifying work for microscopic quantum systems has been constantly debated in th...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
Quantum coherence has been demonstrated in various systems including organic solar cells and solid s...
The performance of quantum heat engines is generally based on the analysis of a single cycle. We cha...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
Interesting effects arise in cyclic machines where both heat and ergotropy transfer take place betwe...
The availability of controllable macroscopic devices, which maintain quantum coherence over relative...
The advent of heat engines had a significant impact on society. By transforming heat into useful wo...
In order to describe quantum heat engines, here we systematically study isothermal and isochoric pro...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
Abstract Work and efficiency of quantum Otto heat engines (QOHEs) can increase by using non-thermal ...
There are both practical and foundational motivations to consider the thermodynamics of quantum syst...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
A simple urn model is presented that may describe heat engines employing as working agents spin-1/2 ...
It is investigated whether non-Markovianity, i.e., the memory effects resulting from the coupling of...
A suitable way of quantifying work for microscopic quantum systems has been constantly debated in th...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
Quantum coherence has been demonstrated in various systems including organic solar cells and solid s...
The performance of quantum heat engines is generally based on the analysis of a single cycle. We cha...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
Interesting effects arise in cyclic machines where both heat and ergotropy transfer take place betwe...
The availability of controllable macroscopic devices, which maintain quantum coherence over relative...
The advent of heat engines had a significant impact on society. By transforming heat into useful wo...
In order to describe quantum heat engines, here we systematically study isothermal and isochoric pro...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
Abstract Work and efficiency of quantum Otto heat engines (QOHEs) can increase by using non-thermal ...
There are both practical and foundational motivations to consider the thermodynamics of quantum syst...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
A simple urn model is presented that may describe heat engines employing as working agents spin-1/2 ...
It is investigated whether non-Markovianity, i.e., the memory effects resulting from the coupling of...
A suitable way of quantifying work for microscopic quantum systems has been constantly debated in th...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
Quantum coherence has been demonstrated in various systems including organic solar cells and solid s...