We study stochastic energetic exchanges in quantum heat engines. Due to microreversibility, these obey a fluctuation relation, called the heat engine fluctuation relation, which implies the Carnot bound: no machine can have an efficiency greater than Carnot's efficiency. The stochastic thermodynamics of a quantum heat engine (including the joint statistics of heat and work and the statistics of efficiency) are illustrated by means of an optimal two-qubit heat engine, where each qubit is coupled to a thermal bath and a two-qubit gate determines energy exchanges between the two qubits.We discuss possible solid-state implementations with Cooper-pair boxes and flux qubits, quantum gate operations, and fast calorimetric on-chip measurements of s...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
Employing currently available quantum technology, we design and implement a nonclassically correlate...
We study stochastic energetic exchanges in quantum heat engines. Due to microreversibility, these ob...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
Device miniaturization allows for the improved speed and performance of modern-day computers compare...
The area of quantum thermodynamics is a relatively new field and there are great efforts in research...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
Technological advances over the past few decades have made it possible to address quantum systems do...
Modern technologies could soon make it possible to investigate the operation cycles of quantum heat ...
© 2015 Elsevier B.V. All rights reserved. The efficiency of macroscopic heat engines is restricted b...
Owing to the ubiquity of synchronization in the classical world, it is interesting to study its beha...
We study the statistical distribution of the ergotropy and of the efficiency of a single-qubit batte...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
Fluctuations of thermodynamic observables, such as heat and work, contain relevant information on th...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
Employing currently available quantum technology, we design and implement a nonclassically correlate...
We study stochastic energetic exchanges in quantum heat engines. Due to microreversibility, these ob...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
Device miniaturization allows for the improved speed and performance of modern-day computers compare...
The area of quantum thermodynamics is a relatively new field and there are great efforts in research...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
Technological advances over the past few decades have made it possible to address quantum systems do...
Modern technologies could soon make it possible to investigate the operation cycles of quantum heat ...
© 2015 Elsevier B.V. All rights reserved. The efficiency of macroscopic heat engines is restricted b...
Owing to the ubiquity of synchronization in the classical world, it is interesting to study its beha...
We study the statistical distribution of the ergotropy and of the efficiency of a single-qubit batte...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
Fluctuations of thermodynamic observables, such as heat and work, contain relevant information on th...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
Employing currently available quantum technology, we design and implement a nonclassically correlate...