The heat flow between a quantum system and its reservoir is analyzed when initially both are in a separable thermal state and asymptotically approach a correlated equilibrium. General findings are illustrated for specific systems and various classes of non-Markovian reservoirs relevant for solid state realizations. System-bath correlations are shown to be substantial at low temperatures even in the weak coupling regime. As a consequence, predictions of work and heat for actual experiments obtained within conventional perturbative approaches may often be questionable. Correlations induce characteristic imprints in heat capacities which opens a proposal to measure them in solid state devices.Peer reviewe
A quantum system and a thermal bath can reach thermal equilibrium through an interaction, whereupon ...
The dynamics when a hot many-body quantum system is brought into instantaneous contact with a cold m...
In classical thermodynamics energy always flows from the hotter system to the colder one. However, i...
The heat flow between a quantum system and its reservoir is analyzed when initially both are in a se...
The heat flow between a quantum system and its reservoir is analyzed when initially both are in a se...
We study the dynamics of heat flux in the thermalization process of a pair of identical quantum syst...
We study the dynamics of heat flux in the thermalization process of a pair of identical quantum syst...
Starting from a recent result on thermodynamic equilibrium of quantum systems, a connection between ...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
How much work can be extracted from a heat bath using a thermal machine? The study of this question ...
© 2017 The Author(s). The laws of thermodynamics, despite their wide range of applicability, are kno...
The laws of thermodynamics, despite their wide range of applicability, are known to break down when ...
Entropy production is the key to the second law of thermodynamics, and it is well defined by conside...
It is analytically shown that the asymptotic correlations following a quantum quench in exactly solv...
Work, moments of work and heat flux are studied for the generic case of a strongly driven twolevel ...
A quantum system and a thermal bath can reach thermal equilibrium through an interaction, whereupon ...
The dynamics when a hot many-body quantum system is brought into instantaneous contact with a cold m...
In classical thermodynamics energy always flows from the hotter system to the colder one. However, i...
The heat flow between a quantum system and its reservoir is analyzed when initially both are in a se...
The heat flow between a quantum system and its reservoir is analyzed when initially both are in a se...
We study the dynamics of heat flux in the thermalization process of a pair of identical quantum syst...
We study the dynamics of heat flux in the thermalization process of a pair of identical quantum syst...
Starting from a recent result on thermodynamic equilibrium of quantum systems, a connection between ...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
How much work can be extracted from a heat bath using a thermal machine? The study of this question ...
© 2017 The Author(s). The laws of thermodynamics, despite their wide range of applicability, are kno...
The laws of thermodynamics, despite their wide range of applicability, are known to break down when ...
Entropy production is the key to the second law of thermodynamics, and it is well defined by conside...
It is analytically shown that the asymptotic correlations following a quantum quench in exactly solv...
Work, moments of work and heat flux are studied for the generic case of a strongly driven twolevel ...
A quantum system and a thermal bath can reach thermal equilibrium through an interaction, whereupon ...
The dynamics when a hot many-body quantum system is brought into instantaneous contact with a cold m...
In classical thermodynamics energy always flows from the hotter system to the colder one. However, i...