External driving of bath temperatures with a phase difference of a nonequilibrium quantum engine leads to the emergence of geometric effects on the thermodynamics. In this work, we modulate the amplitude of the external driving protocols by introducing envelope functions and study the role of geometric effects on the flux, noise and efficiency of a four-level driven quantum heat engine coupled with two thermal baths and a unimodal cavity. We observe that having a finite width of the modulation envelope introduces an additional control knob for studying the thermodynamics in the adiabatic limit. The optimization of the flux as well as the noise with respect to thermally induced quantum coherences becomes possible in presence of geometric eff...
We show that the operation and the output power of a quantum heat engine that converts incoherent th...
We demonstrate a genuine quantum feature of heat: the power emitted by a qubit (quantum two-level sy...
At the heart of quantum thermodynamics lies a fundamental question about what is genuine "quantum" i...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
In the quest for high-performance quantum thermal machines, looking for an optimal thermodynamic eff...
Quantum coherence has been demonstrated in various systems including organic solar cells and solid s...
© 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...
A classical heat engine that extracts work from thermal sources and which does not include coherence...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
Nanoscale heat engines are subject to large fluctuations which affect their precision. The thermodyn...
We study a minimal quantum Otto heat engine, where the working medium consists of an interacting few...
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...
We demonstrate a genuine quantum feature of heat: the power emitted by a qubit (quantum two-level sy...
At the heart of quantum thermodynamics lies a fundamental question about what is genuine "quantum" i...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
In the quest for high-performance quantum thermal machines, looking for an optimal thermodynamic eff...
Quantum coherence has been demonstrated in various systems including organic solar cells and solid s...
© 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...
A classical heat engine that extracts work from thermal sources and which does not include coherence...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
Nanoscale heat engines are subject to large fluctuations which affect their precision. The thermodyn...
We study a minimal quantum Otto heat engine, where the working medium consists of an interacting few...
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...
We demonstrate a genuine quantum feature of heat: the power emitted by a qubit (quantum two-level sy...
At the heart of quantum thermodynamics lies a fundamental question about what is genuine "quantum" i...