Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundamental importance in thermodynamics. This theorem famously states that the maximum efficiency depends only on the temperature of the heat baths used by the engine, but not on the specific structure of baths. Here, we show that when the heat baths are finite in size, and when the engine operates in the quantum nanoregime, a revision to this statement is required. We show that one may still achieve the Carnot efficiency, when certain conditions on the bath structure are satisfied; however if that is not the case, then the maximum achievable efficiency can reduce to a value which is strictly less than Carnot. We derive the maximum efficiency for ...
peer reviewedWe evaluate the efficiency at maximum power of a quantum-dot Carnot heat engine. The un...
A suitable way of quantifying work for microscopic quantum systems has been constantly debated in th...
Quantization of energy is a quintessential characteristic of quantum systems. Here we analyze its ef...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
In this paper we investigate the relationship between the efficiency of a cyclic quantum heat engine...
Thermodynamics is one of the main pillars of theoretical physics, and it has a special appeal of hav...
Thermodynamics is one of the main pillars of theoretical physics, and it has a special appeal of hav...
The relationship between thermodynamics and statistical physics is valid in the thermodynamic limit—...
We study a quantum thermal engine model for which the heat transfer law is determined by Einstein's ...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
It is possible to extract work from a quantum-mechanical system whose dynamics is governed by a time...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
© 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...
peer reviewedWe evaluate the efficiency at maximum power of a quantum-dot Carnot heat engine. The un...
A suitable way of quantifying work for microscopic quantum systems has been constantly debated in th...
Quantization of energy is a quintessential characteristic of quantum systems. Here we analyze its ef...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
In this paper we investigate the relationship between the efficiency of a cyclic quantum heat engine...
Thermodynamics is one of the main pillars of theoretical physics, and it has a special appeal of hav...
Thermodynamics is one of the main pillars of theoretical physics, and it has a special appeal of hav...
The relationship between thermodynamics and statistical physics is valid in the thermodynamic limit—...
We study a quantum thermal engine model for which the heat transfer law is determined by Einstein's ...
© CopyrightEPLA, 2016.A quantum heat engine of a specific type is studied. This engine contains a si...
It is possible to extract work from a quantum-mechanical system whose dynamics is governed by a time...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
© 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...
peer reviewedWe evaluate the efficiency at maximum power of a quantum-dot Carnot heat engine. The un...
A suitable way of quantifying work for microscopic quantum systems has been constantly debated in th...
Quantization of energy is a quintessential characteristic of quantum systems. Here we analyze its ef...