We propose a multilevel quantum heat engine with a working medium described by a generalized Rabi model which consists of a two-level system coupled to a single-mode bosonic field. The model is constructed to be a continuum limit of a quantum biological description of light-harvesting complexes so that it can amplify quantum coherence by a mechanism which is a quantum analog of classical Huygens clocks. The engine operates in a quantum Otto cycle where the working medium is coupled to classical heat baths in the isochoric processes of the four-stroke cycle, while either the coupling strength or the resonance frequency is changed in the adiabatic stages. We found that such an engine can produce work with an efficiency close to the Carnot bou...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
A quantum heat engine (QHE) based on the interaction driving of a many-particle working medium is in...
Abstract We introduce a quantum heat engine performing an Otto cycle by using the thermal properties...
We propose a multilevel quantum heat engine with a working medium described by a generalized Rabi mo...
This paper will investigate a four-stroke quantum heat engine based on the Tavis-Cummings model. The...
Quantum physics revolutionized classical disciplines of mechanics, statistical physics, and electrod...
Quantum physics revolutionized classical disciplines of mechanics, statistical physics, and electrod...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
Owing to the ubiquity of synchronization in the classical world, it is interesting to study its beha...
We consider a purely mechanical quantum cycle comprised of adiabatic and isoenergetic processes. In ...
We propose a system made of three quantum harmonic oscillators as a compact quantum engine for produ...
Performance of nano- and microscale heat engines can be improved with the help of quantum-mechanical...
Traditional thermodynamics assumes that physical systems live in a probabilistic mixture of energy e...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
Modern technologies could soon make it possible to investigate the operation cycles of quantum heat ...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
A quantum heat engine (QHE) based on the interaction driving of a many-particle working medium is in...
Abstract We introduce a quantum heat engine performing an Otto cycle by using the thermal properties...
We propose a multilevel quantum heat engine with a working medium described by a generalized Rabi mo...
This paper will investigate a four-stroke quantum heat engine based on the Tavis-Cummings model. The...
Quantum physics revolutionized classical disciplines of mechanics, statistical physics, and electrod...
Quantum physics revolutionized classical disciplines of mechanics, statistical physics, and electrod...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
Owing to the ubiquity of synchronization in the classical world, it is interesting to study its beha...
We consider a purely mechanical quantum cycle comprised of adiabatic and isoenergetic processes. In ...
We propose a system made of three quantum harmonic oscillators as a compact quantum engine for produ...
Performance of nano- and microscale heat engines can be improved with the help of quantum-mechanical...
Traditional thermodynamics assumes that physical systems live in a probabilistic mixture of energy e...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
Modern technologies could soon make it possible to investigate the operation cycles of quantum heat ...
Quantum heat engines (QHE) are thermal machines where the working substance is a quantum object. In ...
A quantum heat engine (QHE) based on the interaction driving of a many-particle working medium is in...
Abstract We introduce a quantum heat engine performing an Otto cycle by using the thermal properties...