Abstract Work and efficiency of quantum Otto heat engines (QOHEs) can increase by using non-thermal baths or by inhomogeneous scaling of energy levels of the working substance. Given these points, at first, we construct the coherent thermal state for a trigonometric Pöschl–Teller (PT) potential. Then using a particle in this potential, which has unequally spaced energy levels, as a working substance, we investigate the work extraction and the efficiency of QOHEs that operates between cold and hot coherent thermal baths. The results show that changing the PT potential parameters in the adiabatic processes of QOHE, which causes an inhomogeneous shift in energy levels or/and make use of the hot coherent thermal bath, improve work extraction an...
A simple urn model is presented that may describe heat engines employing as working agents spin-1/2 ...
Abstract We introduce a quantum heat engine performing an Otto cycle by using the thermal properties...
We study a quantum heat engine at strong coupling between the system and the thermal reservoirs. Exp...
We consider a single quantum mechanical particle confined to an one-dimensional (1D) infinite square...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
Classically, external power optimization over the coupling times of a heat engine to its baths leads...
This study was funded by Istanbul Technical University Grant No. BAP-41181. F.O. acknowledges the Pe...
Quantum thermal machines make use of non-classical thermodynamic resources, one of which include int...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
We study the partial thermalization to the effect of efficiency at maximum power (EMP) of a quantum ...
The availability of controllable macroscopic devices, which maintain quantum coherence over relative...
We study partial thermalization to the efficiency of a quantum Otto engine using Bose-Einstein Conde...
We study the partial thermalization to the effect of efficiency at maximum power (EMP) of a quantum ...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
A simple urn model is presented that may describe heat engines employing as working agents spin-1/2 ...
Abstract We introduce a quantum heat engine performing an Otto cycle by using the thermal properties...
We study a quantum heat engine at strong coupling between the system and the thermal reservoirs. Exp...
We consider a single quantum mechanical particle confined to an one-dimensional (1D) infinite square...
The unavoidable irreversible losses of power in a heat engine are found to be of quantum origin. Fol...
Classically, external power optimization over the coupling times of a heat engine to its baths leads...
This study was funded by Istanbul Technical University Grant No. BAP-41181. F.O. acknowledges the Pe...
Quantum thermal machines make use of non-classical thermodynamic resources, one of which include int...
The quantum Otto cycle serves as a bridge between the macroscopic world of heat engines and the quan...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
We study the partial thermalization to the effect of efficiency at maximum power (EMP) of a quantum ...
The availability of controllable macroscopic devices, which maintain quantum coherence over relative...
We study partial thermalization to the efficiency of a quantum Otto engine using Bose-Einstein Conde...
We study the partial thermalization to the effect of efficiency at maximum power (EMP) of a quantum ...
We consider a recently proposed four-level quantum heat engine (QHE) model to analyze the role of qu...
A simple urn model is presented that may describe heat engines employing as working agents spin-1/2 ...
Abstract We introduce a quantum heat engine performing an Otto cycle by using the thermal properties...
We study a quantum heat engine at strong coupling between the system and the thermal reservoirs. Exp...