We propose and analyze the use of hybrid microwave cavities as quantum heat engines. A possible realization consists of two macroscopically separated quantum-dot conductors coupled capacitively to the fundamental mode of a microwave cavity. We demonstrate that an electrical current can be induced in one conductor through cavity-mediated processes by heating up the other conductor. The heat engine can reach Carnot efficiency with optimal conversion of heat to work. When the system delivers the maximum power, the efficiency can be a large fraction of the Carnot efficiency. The heat engine functions even with moderate electronic relaxation and dephasing in the quantum dots. We provide detailed estimates for the electrical current and output po...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
Hybrid quantum dot-oscillator systems have become attractive platforms to inspect quantum coherence ...
Quantum dots (QDs) can serve as near perfect energy filters and are therefore of significant interes...
We propose and analyze a simple mesoscopic quantum heat engine that exhibits both high power and hig...
Abstract. We analyze a heat engine based on a hot cavity connected via quantum wells to electronic r...
Cyclical heat engines are a paradigm of classical thermodynamics, but are impractical for miniaturiz...
We show that the operation and the output power of a quantum heat engine that converts incoherent th...
We investigate the nonclassical states of light that emerge in a microwave resonator coupled to a pe...
We review recent theoretical work on thermoelectric energy harvesting in multi-terminal quantum-dot ...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
Abstract. We review recent theoretical work on thermoelectric energy harvesting in multi-terminal qu...
Hybrid quantum dot-oscillator systems have become attractive platforms to inspect quantum coherence ...
Engineered dissipation can be used for quantum state preparation. This is achieved with a suitably e...
© 2015 Elsevier B.V. All rights reserved. The efficiency of macroscopic heat engines is restricted b...
We analyze the power output of a quantum dot machine coupled to two electronic reservoirs via thermo...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
Hybrid quantum dot-oscillator systems have become attractive platforms to inspect quantum coherence ...
Quantum dots (QDs) can serve as near perfect energy filters and are therefore of significant interes...
We propose and analyze a simple mesoscopic quantum heat engine that exhibits both high power and hig...
Abstract. We analyze a heat engine based on a hot cavity connected via quantum wells to electronic r...
Cyclical heat engines are a paradigm of classical thermodynamics, but are impractical for miniaturiz...
We show that the operation and the output power of a quantum heat engine that converts incoherent th...
We investigate the nonclassical states of light that emerge in a microwave resonator coupled to a pe...
We review recent theoretical work on thermoelectric energy harvesting in multi-terminal quantum-dot ...
We discuss a quantum thermal machine that generates power from a thermally driven double quantum dot...
Abstract. We review recent theoretical work on thermoelectric energy harvesting in multi-terminal qu...
Hybrid quantum dot-oscillator systems have become attractive platforms to inspect quantum coherence ...
Engineered dissipation can be used for quantum state preparation. This is achieved with a suitably e...
© 2015 Elsevier B.V. All rights reserved. The efficiency of macroscopic heat engines is restricted b...
We analyze the power output of a quantum dot machine coupled to two electronic reservoirs via thermo...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
Hybrid quantum dot-oscillator systems have become attractive platforms to inspect quantum coherence ...
Quantum dots (QDs) can serve as near perfect energy filters and are therefore of significant interes...