peer reviewedWe study how to achieve the ultimate power in the simplest, yet non-trivial, model of a thermal machine, namely a two-level quantum system coupled to two thermal baths. Without making any prior assumption on the protocol, via optimal control we show that, regardless of the microscopic details and of the operating mode of the thermal machine, the maximum power is universally achieved by a fast Otto-cycle like structure in which the controls are rapidly switched between two extremal values. A closed formula for the maximum power is derived, and finite-speed effects are discussed. We also analyze the associated efficiency at maximum power showing that, contrary to universal results derived in the slow-driving regime, it can approa...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
We apply advanced methods of control theory to open quantum systems and we determine finite-time pro...
The efficiency at maximum power (EMP) of heat engines operating as generators is one corner stone of...
We study how to achieve the ultimate power in the simplest, yet non-trivial, model of a thermal mach...
We study how to achieve the ultimate power in the simplest, yet non-trivial, model of a thermal mach...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
Refrigerators use a thermodynamic cycle to move thermal energy from a cold reservoir to a hot one. I...
Refrigerators use a thermodynamic cycle to move thermal energy from a cold reservoir to a hot one. I...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
We investigate the performance of a quantum thermal machine operating in finite time based on shortc...
Within the recent revival of interest in quantum heat engines between two thermal reservoirs whereb...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
We present a study of the performance of endoreversible thermal machines optimized with respect to t...
Classically, external power optimization over the coupling times of a heat engine to its baths leads...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
We apply advanced methods of control theory to open quantum systems and we determine finite-time pro...
The efficiency at maximum power (EMP) of heat engines operating as generators is one corner stone of...
We study how to achieve the ultimate power in the simplest, yet non-trivial, model of a thermal mach...
We study how to achieve the ultimate power in the simplest, yet non-trivial, model of a thermal mach...
The difference between quantum isoenergetic process and quantum isothermal process comes from the vi...
Refrigerators use a thermodynamic cycle to move thermal energy from a cold reservoir to a hot one. I...
Refrigerators use a thermodynamic cycle to move thermal energy from a cold reservoir to a hot one. I...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
We investigate the performance of a quantum thermal machine operating in finite time based on shortc...
Within the recent revival of interest in quantum heat engines between two thermal reservoirs whereb...
Sadi Carnot's theorem regarding the maximum efficiency of heat engines is considered to be of fundam...
We present a study of the performance of endoreversible thermal machines optimized with respect to t...
Classically, external power optimization over the coupling times of a heat engine to its baths leads...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
We apply advanced methods of control theory to open quantum systems and we determine finite-time pro...
The efficiency at maximum power (EMP) of heat engines operating as generators is one corner stone of...