We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of quantum coherences in determining the thermodynamic properties of the engine, such as flux, output power, and efficiency. A quantitative analysis of the relative effects of the coherences induced by the two thermal baths is brought out. By taking account of the dissipation in the cavity mode, we define useful work obtained from the QHE and present some analytical results for the optimal values of relative coherences that maximizes flux (hence output power) through the engine. We also analyze the role of quantum effects in inducing population inversion (lasing) between the states coupled to the cavity mode. The universal behavior of the efficien...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
Modern technologies could soon make it possible to investigate the operation cycles of quantum heat ...
We show that the operation and the output power of a quantum heat engine that converts incoherent th...
We show that the operation and the output power of a quantum heat engine that converts incoherent th...
Quantum coherence can affect the thermodynamics of small quantum systems. Coherences have been shown...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
This paper will investigate a four-stroke quantum heat engine based on the Tavis-Cummings model. The...
Quantum coherence has been demonstrated in various systems including organic solar cells and solid s...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
The effect of spontaneously generated coherence (SGC) on the quantum heat engine (QHE) con...
A quantum heat engine of a specific type is studied. This engine contains a single particle confined...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
Modern technologies could soon make it possible to investigate the operation cycles of quantum heat ...
We show that the operation and the output power of a quantum heat engine that converts incoherent th...
We show that the operation and the output power of a quantum heat engine that converts incoherent th...
Quantum coherence can affect the thermodynamics of small quantum systems. Coherences have been shown...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
This paper will investigate a four-stroke quantum heat engine based on the Tavis-Cummings model. The...
Quantum coherence has been demonstrated in various systems including organic solar cells and solid s...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
The effect of spontaneously generated coherence (SGC) on the quantum heat engine (QHE) con...
A quantum heat engine of a specific type is studied. This engine contains a single particle confined...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
Modern technologies could soon make it possible to investigate the operation cycles of quantum heat ...