We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to an infinitely extended thermal reservoir R. Initially, the system S is in an arbitrary state while the reservoir is in thermal equilibrium at temperature T. Assuming that the coupled system S+R is mixing with respect to the joint thermal equilibrium state, we study the Full Counting Statistics (FCS) of the energy transfers S->R and R->S in the process of return to equilibrium. The first FCS describes the increase of the energy of the system S. It is an atomic probability measure, denoted $P_{S,\lambda,t}$, concentrated on the set of energy differences $\sigma(H_S)-\sigma(H_S)$ ($\sigma(H_S)$ is the spectrum of the Hamiltonian of S, $t$ is the length o...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
One of the most relevant aspects of thermodynamics is its universality. Its prescriptions are ubiqu...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
Abstract. We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We develop the full counting statistics of dissipated heat to explore the relation with Landauer's p...
Landauer's principle provides a perspective on the physical meaning of information as well as on the...
International audienceThis work concerns the statistics of the Two-Time Measurement definition of he...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
We develop a general theory describing the thermodynamical behavior of open quantum systems coupled ...
We consider the dynamics of fixed size subsystems of an open quantum system, in which N particles i...
The exchange of energy between a classical open system and its environment can be analysed for a sin...
Calorimetric measurements are experimentally realizable methods to assess thermodynamics relations i...
Quantum systems strongly coupled to many-body systems equilibrate to the reduced state of a global t...
This thesis studies problems concerning the dynamics and thermodynamics of manybody quantum systems...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
One of the most relevant aspects of thermodynamics is its universality. Its prescriptions are ubiqu...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
Abstract. We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We develop the full counting statistics of dissipated heat to explore the relation with Landauer's p...
Landauer's principle provides a perspective on the physical meaning of information as well as on the...
International audienceThis work concerns the statistics of the Two-Time Measurement definition of he...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
We develop a general theory describing the thermodynamical behavior of open quantum systems coupled ...
We consider the dynamics of fixed size subsystems of an open quantum system, in which N particles i...
The exchange of energy between a classical open system and its environment can be analysed for a sin...
Calorimetric measurements are experimentally realizable methods to assess thermodynamics relations i...
Quantum systems strongly coupled to many-body systems equilibrate to the reduced state of a global t...
This thesis studies problems concerning the dynamics and thermodynamics of manybody quantum systems...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
One of the most relevant aspects of thermodynamics is its universality. Its prescriptions are ubiqu...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...