The unitary dynamics of isolated quantum systems does not allow a pure state to thermalize. Because of that, if an isolated quantum system equilibrates, it will do so to the predictions of the so-called “diagonal ensemble” ρ DE . Building on the intuition provided by Jaynes’ maximum entropy principle, in this paper we present a novel technique to generate progressively better approximations to ρ DE . As an example, we write down a hierarchical set of ensembles which can be used to describe the equilibrium physics of small isolated quantum systems, going beyond the “thermal ansatz” of Gibbs ensembles
For a quantum system, a density matrix ρ that is not pure can arise, via averaging, from a distribut...
The diagonal entropy was introduced as a good entropy candidate especially for isolated quantum syst...
Abstract. The non-equilibrium dynamics of isolated quantum systems represent a theoretical and exper...
Investigation on foundational aspects of quantum statistical mechanics recently entered a renaissanc...
A crucial point in statistical mechanics is the definition of the notion of thermal equilibrium, whi...
A crucial point in statistical mechanics is the definition of the notion of thermal equilibrium, whi...
Based on the publications [P1–P6], the cumulative dissertation at hand addresses quite diverse aspe...
We argue that a particle language provides a conceptually simple framework for the description of an...
We review recent progress in the nonequilibrium dynamics of thermally isolated many-body quantum sys...
In these lectures, I pedagogically review some recent advances in the study of the non-equilibrium d...
The project concerns the study of the interplay among quantum mechanics, statistical mechanics and t...
The circumstances under which a system reaches thermal equilibrium, and how to derive this from basi...
This paper presents a study of the nonequilibrium relaxation process of chemically reactive systems ...
The construction of the generalized Gibbs ensemble, to which isolated integrable quantum many-body s...
We formulate the problem of approach to equilibrium in algebraic quantum statistical mechanics and s...
For a quantum system, a density matrix ρ that is not pure can arise, via averaging, from a distribut...
The diagonal entropy was introduced as a good entropy candidate especially for isolated quantum syst...
Abstract. The non-equilibrium dynamics of isolated quantum systems represent a theoretical and exper...
Investigation on foundational aspects of quantum statistical mechanics recently entered a renaissanc...
A crucial point in statistical mechanics is the definition of the notion of thermal equilibrium, whi...
A crucial point in statistical mechanics is the definition of the notion of thermal equilibrium, whi...
Based on the publications [P1–P6], the cumulative dissertation at hand addresses quite diverse aspe...
We argue that a particle language provides a conceptually simple framework for the description of an...
We review recent progress in the nonequilibrium dynamics of thermally isolated many-body quantum sys...
In these lectures, I pedagogically review some recent advances in the study of the non-equilibrium d...
The project concerns the study of the interplay among quantum mechanics, statistical mechanics and t...
The circumstances under which a system reaches thermal equilibrium, and how to derive this from basi...
This paper presents a study of the nonequilibrium relaxation process of chemically reactive systems ...
The construction of the generalized Gibbs ensemble, to which isolated integrable quantum many-body s...
We formulate the problem of approach to equilibrium in algebraic quantum statistical mechanics and s...
For a quantum system, a density matrix ρ that is not pure can arise, via averaging, from a distribut...
The diagonal entropy was introduced as a good entropy candidate especially for isolated quantum syst...
Abstract. The non-equilibrium dynamics of isolated quantum systems represent a theoretical and exper...