Starting from the quantum statistical master equation derived in [1] we show how the connection to the semi-classical Boltzmann equation (SCBE) can be established and how irreversibility is related to the problem of separability of quantum mechanics. Our principle goal is to find a sound theoretical basis for the description of the evolution of an electron gas in the intermediate regime between pure classical behavior and pure quantum behavior. We investigate the evolution of one-particle properties in a weakly interacting N-electron system confined to a finite spatial region in a near-equilibrium situation that is weakly coupled to a statistical environment. The equations for the reduced n-particle density matrices, with n < N are hierarch...
In this paper we analyze the asymptotic dynamics of a system of N quantum particles, in a weak coupl...
These notes investigate the time evolution of quantum systems, and in particular the rigorous deriva...
By means of the examples of classical and Bohmian quantum mechanics, we illustrate the well-known id...
Starting from the quantum-Boltzmann equation derived in a previous paper, we study the irreversible ...
We give a nonrigorous derivation of the nonlinear Boltzmann equation from the Schrödinger evolution ...
A dilute gas initially in equilibrium and confined to half of an isolated box by a partition willirr...
We investigate the potential of a quantum Boltzmann equation without momentum conservation for desc...
The conventional theory of hydrodynamics describes the evolution in time of chaotic many-particle s...
We explore some aspects of nonequilibrium statistical mechanics of classical and quantum systems. Tw...
The equation for the quantum motion of a Brownian particle in a gaseous environment is derived by me...
We investigate the potential of a quantum Boltzmann equation without momentum conservation for descr...
textTextEcole d'ete de physique theorique. Les Houches, Haute-Savoie, FranceLecture notes by George ...
Motivated by current interest in the dynamics of trapped quantum gases, we study the microcanonical ...
This work investigates classical interacting particle systems for which the stochastic time evolutio...
In the last decades important steps has been made to understand the quantum behaviour of a test part...
In this paper we analyze the asymptotic dynamics of a system of N quantum particles, in a weak coupl...
These notes investigate the time evolution of quantum systems, and in particular the rigorous deriva...
By means of the examples of classical and Bohmian quantum mechanics, we illustrate the well-known id...
Starting from the quantum-Boltzmann equation derived in a previous paper, we study the irreversible ...
We give a nonrigorous derivation of the nonlinear Boltzmann equation from the Schrödinger evolution ...
A dilute gas initially in equilibrium and confined to half of an isolated box by a partition willirr...
We investigate the potential of a quantum Boltzmann equation without momentum conservation for desc...
The conventional theory of hydrodynamics describes the evolution in time of chaotic many-particle s...
We explore some aspects of nonequilibrium statistical mechanics of classical and quantum systems. Tw...
The equation for the quantum motion of a Brownian particle in a gaseous environment is derived by me...
We investigate the potential of a quantum Boltzmann equation without momentum conservation for descr...
textTextEcole d'ete de physique theorique. Les Houches, Haute-Savoie, FranceLecture notes by George ...
Motivated by current interest in the dynamics of trapped quantum gases, we study the microcanonical ...
This work investigates classical interacting particle systems for which the stochastic time evolutio...
In the last decades important steps has been made to understand the quantum behaviour of a test part...
In this paper we analyze the asymptotic dynamics of a system of N quantum particles, in a weak coupl...
These notes investigate the time evolution of quantum systems, and in particular the rigorous deriva...
By means of the examples of classical and Bohmian quantum mechanics, we illustrate the well-known id...