A quantum thermal machine is an open quantum system that enables the conversion between heat and work at the micro or nano-scale. Optimally controlling such out-of-equilibrium systems is a crucial yet challenging task with applications to quantum technologies and devices. We introduce a general model-free framework based on Reinforcement Learning to identify out-of-equilibrium thermodynamic cycles that are Pareto optimal trade-offs between power and efficiency for quantum heat engines and refrigerators. The method does not require any knowledge of the quantum thermal machine, nor of the system model, nor of the quantum state. Instead, it only observes the heat fluxes, so it is both applicable to simulations and experimental devices. We test...
Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the relation...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
We consider optimizations of Lenoir heat engine within a quantum dynamical field consisting of $N$ n...
The optimal control of open quantum systems is a challenging task but has a key role in improving ex...
In the quest for high-performance quantum thermal machines, looking for an optimal thermodynamic eff...
Providing an optimal path to a quantum annealing algorithm is key to finding good approximate soluti...
We propose a systematic method based on reinforcement learning (RL) techniques to find the optimal p...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
We present an overview of recent advances in the study of energy dynamics and mechanisms for energy ...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
In the last few years, deep reinforcement learning has been proposed as a method to perform online ...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
We present a rigorous approach, based on the concept of continuous thermomajorization, to algorithmi...
We study a minimal quantum Otto heat engine, where the working medium consists of an interacting few...
Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the relation...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
We consider optimizations of Lenoir heat engine within a quantum dynamical field consisting of $N$ n...
The optimal control of open quantum systems is a challenging task but has a key role in improving ex...
In the quest for high-performance quantum thermal machines, looking for an optimal thermodynamic eff...
Providing an optimal path to a quantum annealing algorithm is key to finding good approximate soluti...
We propose a systematic method based on reinforcement learning (RL) techniques to find the optimal p...
The concept of thermal machines has evolved from the canonical steam engine to the recently proposed...
We present an overview of recent advances in the study of energy dynamics and mechanisms for energy ...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
In the last few years, deep reinforcement learning has been proposed as a method to perform online ...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
We present a rigorous approach, based on the concept of continuous thermomajorization, to algorithmi...
We study a minimal quantum Otto heat engine, where the working medium consists of an interacting few...
Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the relation...
We investigate how the quantum signatures can emerge by modifications to the experimentally demonstr...
We consider optimizations of Lenoir heat engine within a quantum dynamical field consisting of $N$ n...