Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in particular when the system is strongly coupled to its environment, or when memory effects cannot be neglected. Here, we address such regimes when the system-bath couplings are periodically modulated in time. We show that the couplings modulation, usually associated with a purely dissipative effect, can be suitably engineered to perform thermodynamic tasks. In particular, asymmetric couplings to two heat baths can be used to extract heat from the cold reservoir and to realize an ideal heat rectifier, where the heat current can be blocked either in the forward or in the reverse configuration by simply tuning the frequency of the couplings modula...
The study of open quantum systems often relies on approximate master equations derived under the ass...
Isothermal transformations are minimally dissipative but slow processes, as the system needs to rema...
Energy conversion of heat into work at the quantum level is modeled by quantum heat machines (QHMs) ...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
We combine the formalisms of Floquet theory and full counting statistics with a Markovian embedding ...
Quantum systems strongly coupled to many-body systems equilibrate to the reduced state of a global t...
The performance characteristics of a heat rectifier and a heat pump are studied in a non-Markovian f...
The performance characteristics of a heat rectifier and a heat pump are studied in a non-Markovian f...
We apply advanced methods of control theory to open quantum systems and we determine finite-time pro...
The thermodynamics of quantum systems coupled to periodically modulated heat baths and work reservoi...
This is the final version. Available from American Physical Society via the DOI in this recordThe di...
The study of open quantum systems often relies on approximate master equations derived under the ass...
Isothermal transformations are minimally dissipative but slow processes, as the system needs to rema...
Energy conversion of heat into work at the quantum level is modeled by quantum heat machines (QHMs) ...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
Describing the thermodynamic properties of quantum systems far from equilibrium is challenging, in p...
We combine the formalisms of Floquet theory and full counting statistics with a Markovian embedding ...
Quantum systems strongly coupled to many-body systems equilibrate to the reduced state of a global t...
The performance characteristics of a heat rectifier and a heat pump are studied in a non-Markovian f...
The performance characteristics of a heat rectifier and a heat pump are studied in a non-Markovian f...
We apply advanced methods of control theory to open quantum systems and we determine finite-time pro...
The thermodynamics of quantum systems coupled to periodically modulated heat baths and work reservoi...
This is the final version. Available from American Physical Society via the DOI in this recordThe di...
The study of open quantum systems often relies on approximate master equations derived under the ass...
Isothermal transformations are minimally dissipative but slow processes, as the system needs to rema...
Energy conversion of heat into work at the quantum level is modeled by quantum heat machines (QHMs) ...