Since its inception about two centuries ago thermodynamics has sparkled continuous interest and fundamental questions. According to the second law no heat engine can have an efficiency larger than Carnot's efficiency. The latter can be achieved by the Carnot engine, which however ideally operates in infinite time, hence delivers null power. A currently open question is whether the Carnot efficiency can be achieved at finite power. Most of the previous works addressed this question within the Onsager matrix formalism of linear response theory. Here we pursue a different route based on finite-size-scaling theory. We focus on quantum Otto engines and show that when the working substance is at the verge of a second order phase transition diverg...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
Within the recent revival of interest in quantum heat engines between two thermal reservoirs whereb...
We perform a molecular dynamics computer simulation of a heat engine model to study how the engine s...
Since its inception about two centuries ago thermodynamics has sparkled continuous interest and fund...
FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOWe construct an example of a heat engin...
The widely debated feasibility of thermodynamic machines achieving Carnot efficiency at finite power...
We evaluate the efficiency at maximum power of a quantum-dot Carnot heat engine. The universal value...
The efficiency of an heat engine is traditionally defined as the ratio of its average output work ov...
The area of quantum thermodynamics is a relatively new field and there are great efforts in research...
© 2015 Elsevier B.V. All rights reserved. The efficiency of macroscopic heat engines is restricted b...
We consider the quality factor Q, which quantifies the trade-off between power, efficiency, and fluc...
Achieving the Carnot efficiency at finite power is a challenging problem in heat engines due to the ...
We propose the minimally nonlinear irreversible heat engine as a new general theoretical model to st...
The Carnot cycle imposes a fundamental upper limit to the efficiency of a macroscopic motor operatin...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
Within the recent revival of interest in quantum heat engines between two thermal reservoirs whereb...
We perform a molecular dynamics computer simulation of a heat engine model to study how the engine s...
Since its inception about two centuries ago thermodynamics has sparkled continuous interest and fund...
FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOWe construct an example of a heat engin...
The widely debated feasibility of thermodynamic machines achieving Carnot efficiency at finite power...
We evaluate the efficiency at maximum power of a quantum-dot Carnot heat engine. The universal value...
The efficiency of an heat engine is traditionally defined as the ratio of its average output work ov...
The area of quantum thermodynamics is a relatively new field and there are great efforts in research...
© 2015 Elsevier B.V. All rights reserved. The efficiency of macroscopic heat engines is restricted b...
We consider the quality factor Q, which quantifies the trade-off between power, efficiency, and fluc...
Achieving the Carnot efficiency at finite power is a challenging problem in heat engines due to the ...
We propose the minimally nonlinear irreversible heat engine as a new general theoretical model to st...
The Carnot cycle imposes a fundamental upper limit to the efficiency of a macroscopic motor operatin...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
Within the recent revival of interest in quantum heat engines between two thermal reservoirs whereb...
We perform a molecular dynamics computer simulation of a heat engine model to study how the engine s...